Intermediate and Advanced Training Programs
December 10, 2008 by Big Mojo
Filed under Intermediate and Advanced Programs, Training Programs
Intermediate and Advanced Training Programs
Those who wish to continue their weight-training interests following their curriculum requirement may want to devote more time to their training. With their more advanced standing and subsequent muscle growth and development may want to design programs that provide for added accentuation and exertion upon the muscles.
“Over-training” Syndrome”
The dilemma facing all weight-training enthusiasts is the one concerning workout duration. Many exuberant trainees set up routines that require up to three hours (sometimes more), to complete. Over-extending the time in the gym will not only prove to be non-productive to growth and development goals, but will, in fact, prove to be counter-productive. It is essential that the routines be set up so as to allow maximum training intensity without the risk of “burning out”. Over-training syndrome is the biggest cause of failure to succeed in the weight-training game. The biggest cause of over-training can be traced to inappropriate training regimes which simply are too long.
How Do I Avoid Over-Training?
The question that looms is, how do I make certain to include enough movements, as well as a sufficient number of reps and sets of those movements in order to provide for optimum growth and development potential while keeping in mind the considerations of avoiding the over training syndrome? The answer can be found in a program schematic that incorporates additional training days into the regime. Instead of training 3 days a week the trainee can now embark on routines that involve four, five, and six days a week training regimes. More training days means that the body can be divided (split) into segments allowing for accentuation on specific regions of the body as opposed to the entire muscular system.
Split-Routines
By training more frequently, the muscular system can be broken down into different parts. The trainee assaults specific parts on pre-determined days in a regular schedule of routines that allows for equal training time to each body part. By splitting the body into parts (split-training or “splitting”), the trainee is able to provide for an intense training session on each part without having to spend up to three hours training.
Over-training Syndrome Still Prevalent
It is important that the trainee not run rampant with the new-found provision of emphasis that the split-routine offers. Many trainees structure programs that have five or six exercises listed for each body part that they plan to attack during the workout. In addition, a frequent error in program design is seen with routines that call for five or six sets for each exercise! It should be realized that over-training syndrome can surface with split-training as easily as it can with the full-body training approaches and as such, appropriate program design is essential in avoiding the over-training syndrome.
Optimum Training Duration
The maximum amount of time that should be devoted to the anaerobic weight-training), option of their routine should be no more than 1 to 1½ hours. Remember, the body must be fuelled in order to promote muscle hypertrophy, long training sessions deplete the body of essential nutrients. It is impossible to eat enough to sustain two and a half-three hour training sessions. An outline of the various “split-routines” will now be presented. It should be noted that there are several approaches to be taken with reference to training schematics presented below. Experiment with several and monitor the resultant training effects of each of them. In so doing, you will be able to determine the most effective training schematics for your individual requirements. You will want to remember to design the program within a 1 to 1½ hour time period in order to reduce the risk of over-training.
Exercise Selection
When selecting the exercises to include in a training program, thought should be given to the following variables:
- Movement Classification — mass-mover, isolator, peaker;
- Training Mode — free-weight, cable/plate-stack, variable-resistance;
- Type of Contraction — isotonic (free weight), isokinetic (machine) – Type of Grip — pronated, semi-pronated, supinated; – Angle-of-application — supine, incline, decline, vertical, bent-over. When reading the specific examples provided in the upcoming sections, pay special attention to the above-mentioned variables, how they are combined and how they are varied in a routine and across all routines
4-days-a-week Training Upper/Lower
The upper/lower split, as the name implies, divides the body into the upper region—including the chest, upper back, shoulders, triceps, biceps and forearms—and the lower region—quadriceps, hamstrings, calves, lower back and abdominals. Then each region is trained on alternate days.
Upper/Lower Split Emphasizes the Development of the Legs
Unlike the remainder of the programs presented in upcoming section, the upper/lower split allocates a full day of to lower body training. This allow for more lower body exercise to be completed within the 1 to 1½ workout because training time is not shared with any other muscle. This allows for the trainee to potentially see significant gains in the muscular of the lower body. Unfortunately however, during the upper body workout, the five major upper body muscle groups must be squeezed into the desired training time. As a result, the upper body may only experience maintenance without any explicit gains. This kind of split is ideal for athletes nearing the commencement of the competition season who are involved in sports which place significant emphasis on the use of the lower body and at the same time require less use of the upper body. Examples of such sports include soccer, cycling, running etc.
Upper/Lower Weekly Schematic
- Day 1 Upper – Day 2 Lower – Day 3 Rest – Day 4 Upper – Day 5 Lower – Day 6 Rest – Day 7 Rest
Upper Muscle Groups
- Chest – Back – Shoulders – Triceps – Biceps – Forearms
Pull Muscle Groups
- Quadriceps – Hamstrings – Calves – Lower Back – Abdominals
Specific Example
- Day 1 Chest, Back, Shoulders, Triceps, Biceps, Forearms
- Day 2 Quadriceps, Hamstrings, Calves, Lower Back, Abdominals
- Day 3 Rest
- Day 4 Repeat Day 1
- Day 5 Repeat Day 2
- Day 6 Rest
- Day 7
Rest In the exercise listing below, the trainee is not limited to following the same routine for each body part in a training session. For example, a workout does not have to consist of Routine A for Chest, Shoulders and Triceps; it may consist of Routine A for Chest, Routine C for Shoulders and Routine B for Triceps or any combination thereof. This allows for maximum variety in the training program. However, it is not good practice to change the training order of the muscle groups in a push/pull program; therefore, in this routine, always train Chest first, Shoulders second and Triceps third. The following rep ranges are assumed based on the exercise classification – Mass-mover exercises: 3 sets of 12, 10, 8 repetitions – Isolation exercises: 3 sets of 10 repetitions – Peaking exercises: 3 sets of
10 -12 repetitions.

Push/Pull
The push/pull training split sees the body being divided into those movements which require pushing actions and those movements which require pulling actions. Pushing actions involve the muscles of the chest, triceps, and shoulders, while the pulling movements involve the wide range of muscles of the back and the biceps. Please note that because the push day is longer and more strenuous than the pull day, the legs will be trained on the pull day. There are obviously too many movements to name; please refer to the outline of program schematic (exercise routines) as a guide to designing your specific push/pull routine.
Push/Pull Programs Increase Over-training Risks for the Triceps
The considerations for over-training the triceps are emphasized if the trainee is following a push/pull program schematic as the push/pull program would not only see the trainee working the triceps during the actual triceps routine but also during the chest and shoulder routines. The individual would be at even greater risk of “burning” the triceps due to the accentuation of the “push-day” body parts. Instead of one or two movements of three to four sets on the triceps, chest, and shoulders the “push-day” body parts exercise schematic would be escalated to four or five movements performed for three or four sets each. Remember, the escalation of the movements is not just applied specifically to the triceps movements but also to the pressing movements for both the chest and the shoulders. A good approach to take with reference to program design is to utilize many of the shaping movements for the shoulders and chest in order to lower the number of pressing exercises which would significantly reduce the wear and tear on the triceps.
Push/Pull Weekly Schematic
The push/pull routine calls for a cycle of one push day and one pull day followed by a rest day and then a repeat of one push day and one pull day followed by two rest days. The cycle would appear:
- Day 1 Push
- Day 2 Pull
- Day 3 Rest
- Day 4 Push
- Day 5 Pull
- Day 6 Rest
- Day 7 Rest
Push Muscle Groups
- Chest – Shoulders – Triceps
Pull Muscle Groups
- Back – Biceps – * Legs – * Forearms * The Legs and the Forearms would be included in the Pull Muscle Groups as well although they do not entirely fit the classification. This is done in order to ensure every muscle is trained within the 5 day-a-week schematic and that the length of the Push and Pull routines are approximately equal.
Specific Example
- Day 1 Chest, Shoulders, Triceps
- Day 2 Back, Biceps, Forearms, Legs
- Day 3 Rest
- Day 4 Repeat Day 1
- Day 5 Repeat Day 2
- Day 6 Rest
- Day 7 Rest
In the exercise listing below, the trainee is not limited to following the same routine for each body part in a training session. For example, a workout does not have to consist of Routine A for Chest, Shoulders and Triceps; it may consist of Routine A for Chest, Routine C for Shoulders and Routine B for Triceps or any combination thereof. This allows for maximum variety in the training program. However, it is not good practice to change the training order of the muscle groups in a push/pull program; therefore, in this routine, always train Chest first, Shoulders second and Triceps third. The following rep ranges are assumed based on the exercise classification – Mass-mover exercises: 3 sets of 12, 10, 8 repetitions – Isolation exercises: 3 sets of 10 repetitions – Peaking exercises: 3 sets of 10-12 repetitions

5-days-a-week Training In the 5-days-a-week schematic the split is constructed to allow for two body parts to be worked twice within the week and one body part will be trained once within the week. The routine that is generally-applied is an off shoot of the push/pull routine. The split might be structured to appear as:
Week 1 - Day 1 Chest, Shoulders, Triceps – Day 2 Back, Biceps, Forearms – Day 3 Legs, Traps – Day 4 Chest, Shoulders, Triceps – Day 5 Back, Biceps, Forearms – Day 6 Rest – Day 7 Rest
Week 2 - Day 1 Legs, Traps – Day 2 Chest, Shoulders, Triceps – Day 3 Back, Biceps, Forearms – Day 4 Legs, Traps – Day 5 Chest, Shoulders, Triceps – Day 6 Rest – Day 7 Rest
Week 3 - Day 1 Back, Biceps, Forearms – Day 2 Legs, Traps – Day 3 Chest, Shoulders, Triceps – Day 4 Back, Biceps, Forearms – Day 5 Legs, Traps – Day 6 Rest – Day 7 Rest
In the first week we see that Leg/Traps is performed once within the week. In the second week of the routine Back/Biceps/Forearms would be performed once within the week. In the third week of the routine Chest/Shoulders/Triceps would be performed once within the week. Then the cycle would begin again in Week 1.
8-day Cycle Training There are two basic approaches that can be taken with reference to the 8-day cycle training schematic. The first would be congruent with the push/pull concept and the second would be congruent with the agonist antagonist concept. A working model of each will be presented.
Agonist-Antagonist - Day 1 Chest/Back – Day 2 Legs, Shoulders, Traps – Day 3 Biceps/Triceps, Forearms – Day 4 Rest – Day 5 Repeat Day 1 – Day 6 Repeat Day 2 – Day 7 Repeat Day 3 – Day 8 Rest
Specific Example As mentioned above, the trainee is not limited to following the same routine for each body part in a training session. For example, a workout does not have to consist of Routine A for Chest and Back; it may consist of Routine A for Chest and Routine C for Back or any combination thereof. Again, this allows for maximum variety in the training program. In an agonist/antagonist schematic, unlike that of a push/pull, the training order of the muscle groups may be interchanged. For example, on Day 1, Chest may be trained first, while on Day 5, Back may be trained first. The following rep ranges are assumed based on the exercise classification – Mass-mover exercises: 4 sets of 12, 10, 8, 6 repetitions – Isolation exercises: 4 sets of 10 repetitions – Peaking exercises: 4 sets of 10-12 repetitions

Push-Pull
In this schematic Day 1 represents the Push day; Day 3 represents the Pull day; while Day 2 is an intermediate day used for lower body training and an opportunity to train the trapezius and forearms muscles that do not strictly fall under either category. – Day 1 Chest, Shoulders, Triceps – Day 2 Legs, Traps, Forearms – Day 3 Back, Biceps, Lower Back – Day 4 Rest – Day 5 Repeat Day 1 – Day 6 Repeat Day 2 – Day 7 Repeat Day 3 – Day 8 Rest
Specific Example

Advanced Training – Phase I
December 10, 2008 by Big Mojo
Filed under Phase1, Training Programs
Advanced Training — Phase I
With proper technique and program design ideas firmly established, now we address the idea of
advanced training. More specifically, how can you modify the way you execute your sets of a specific
exercise (or grouping of exercises) in order to increase the intensity of your training. Since this topic
is addressed in detail in the “Scientific Principles of Athletic Training” textbook—which is also a part
of the CORFIT International Curriculum Textbook series—we will present in what follows two
chapters from “Scientific Principles of Athletic Training”:
- Advanced Training—Phase I
- Advanced Training—Phase II
Incline Pyramiding
Pyramiding is a training approach that allows for the safe escalation of resistance through small
increment increases. Following the preparatory warm-up phase, an auxiliary warm-up is added and
then a series of escalations follow until the high-end set load is reached. The general application is
one that sees the repetitions decreased as the resistance is increased. Usually pyramid training would
involve several sets (5 or more) in order to promote muscle stamina and to provide a maximal
“pump” into the muscle. Incline pyramiding however is generally reserved for the mass-mover exercise
inventory.
Consistent Increment Approach
The consistent increment schematic applied in establishing a high-end set load of 205 pounds
might appear as follows:

You will note the consistency of increment increase of twenty pounds until the last increment increase
of ten pounds. The small increment loading prepares the involved muscles for the impending
task ahead. The smaller increment increase to the top-end set load is to further accommodate the
requirement for safety in escalating to the high-end set.
Descending Increment Approach
There are several approached that can be taken with reference to pyramiding. Many trainees advocate
the descending increment schematic. With the objective of a high-end set load of 220 pounds,
the format might appear as follows:

Benefits Associated With Incline Pyramiding
The major benefit associated to incline pyramiding is that it provides an opportunity for trainees
to safely, and effectively increase the amount of resistance they will be working with. Increasing
weight represents the cornerstone principle of weight resistance training; the “progressive resistance”
or “overload” principle which states: “in order to promote muscle hypertrophy (growth and development),
increased loads have to be placed upon the muscle.” Pyramid training represents the most
efficient and safest approach in order to increase loading.
Exercises Designated for Incline Pyramiding
- Legs — Leg Press (Lying or 45° Angle variations)
- Calves — Standing Calf Raise
- Chest — Bench Press (All angles)
- Back — Lat Pulldown (All variations); Seated Row (All variations)
- Triceps — Cable Pressdown ( All variations)
- Biceps — Barbell Curl
Delorme Ascending-strength Pyramid
A variation of the incline pyramid is featured with the explanation of the Delorme Ascending
Strength Pyrmaid. The Delorme Ascending-Strength Pyramid approach works right in synch with the
recommended warm-up (pyramid design) with the exception that a single (one) high-end set load
application is employed. The rep-count is established at 10 for each set. This of course, is in contrast,
to the normally applied three high-end-set-load applications (and the descending-rep-count application
10-9-8). The Delorme Ascending Strength Pyramid utilizes a similar 50% -75%- 100% reference
to High-End-Set-Load (or “Working-Set”) applications as outlined in the CORFIT training program
schematic. The single High-End-Set-Load or “Working Set” is seen to serve two purposes:
- It does not tire the trainee with the single max-effort set
- It allows for maximum growth potential because of maximal taxation for a non-extended period.
This would be an example of the “get-in and get-out quick” scheme of the muscle strengthgaining
philosophy. Note; other rep-count applications can be employed with the Delorme Ascending-
Strength Pyramid application. The considerations here would include training goals (re; training
categories; powerlifting, strength training, strength-endurance training.

Note: the 10 reps in sets 1 and 2 are established at 10 reps-max applications to preserve energy
for the final 10 rep max-load set. Another highly-motivating aspect to the 1 HESL application
theory, is that research appears to support the concept that a single max-effort set is superior to multiple
or zero HESL sets.
Decline Pyramiding
Another form of pyramid training is discovered with a decline pyramid application. In this approach
the trainee escalates to the high-end set load and then reduces the load with each succeeding
set. The purpose of decline pyramiding is to provide the muscle with an opportunity to work over a
longer duration which produces an enhanced growth and development effect due to the longer motor-
unit recruitment period associated with decline pyramid applications.
However, this is not the only approach to a decline pyramid. Three other applications of the decline
pyramid are as follows:
- Consistent Rep Count Application;
- Descending Rep Count Application;
- Ascending Rep Count Application.
Consistent Rep-count Application

With the Consistent Rep Count application the increment drop is greater at the early stages of
the schematic and gradually decreased as the strip-set continues (20-10-5 lbs.). You will note that the
increment differential is provided so as to allow for a consistent number of repetitions to be performed.
There are a number of problems associated with this approach:
- The consideration for maintaining a consistent number of repetitions necessitates a large drop in
weight with each stage of the decline pyramid which reduces the effectiveness of the decline pyramid
application.
- The constant level of repetitions (established at 10 in this instance) creates a risk of burning the
muscle due to the high overall number of repetitions that will be performed.
- It takes a great deal of concentration in order to perform a consistent rep-count for each stage of
the decline pyramid. There is a strong tendency to incorporate “cheat moves” into the decline
pyramid application. It is advised that the trainee gain experience in weight-training in general before
attempting to perform consistent high rep-count decline pyramiding. The beginning weighttraining
student would be best advised to avert this approach for the Descending Rep Count
Application.
Descending Rep-count Application

With the Descending Rep Count application, the combination of reduced resistance and reduced-
reps work in harmony to promote the safe, efficient performance of the strip-set training application.
With this approach, the trainee begins with a high rep-count and gradually reduces the
number of reps as the strip-set progresses. The weight that is applied initially is one that allows for a
confident handling of the load. The descending rep-count serves the additional purposes of allowing
for a reduced number of over all repetitions which helps to avoid the risk of “burning” the muscle.
The reduction in reps allows for greater concentration to be exerted for each rep of each stage of the
decline pyramid application. Because of the above-mentioned factors, this approach represents the
ideal manner in which the beginning weight-training student can be introduced to decline pyramiding.
Ascending Rep-count Application

The Ascending Rep Count represents a true decline pyramid as it was defined above. Because
there are fewer reps performed in the early stages of the pyramid, there is sufficient muscle stamina
(as well as strength) to warrant an escalation of the rep-count as the strip-set progresses. It is important
that the trainee maintain a high-level of concentration however, in effort to avoid committing
errors in execution that could easily lead to injury and at best, significantly reduce the effectiveness of
the decline pyramid.
Benefits Associated with Decline Pyramiding
Decline pyramiding provide for a resultant increase in muscle stamina which is highly beneficial
to the trainee whose objective is to continuously apply the progressive resistance principle. Increased
muscle stamina means that the muscle’s fatigue point is extended past previous levels which allow for
the muscle to continue recruiting motor-units past the previous point of failure. If the muscle is able
to sustain motor-unit recruitment longer (and thus provide for a longer contraction duration), the
trainee is able to work with increased loads in a more effective manner.
Benefit of Muscle Stamina in Heavy Loading
When maximum loading is utilized there is a corresponding slowing effect upon the speed of the
movement application. When the burden of the load threatens to overcome the muscle there is a
increased slowing of the movement that results in the weight almost coming to a halt. The muscle’s
affinity for motor-unit recruitment is virtually exhausted. By being able to sustain the process of motor-
unit recruitment past the previous point of exhaustion as a result of the training effects resulting
from sustained-sets training permitted by a constant reducing of the load; (as found in decline pyramiding),
the trainee is able to continue past previous points of muscle exhaustion.
Enhanced Growth and Development Potential
By being able to complete a repetition that would not have otherwise been possible (or perhaps
adding additional reps to the set), allows for enhanced growth and development potential.
In this way decline pyramiding provides more than just an effect of red fiber stimulation (muscle
stamina) but is able to promote a training effect on the muscles white fibers (increased muscle hyper
trophy).
Many Variations of Schematic Possible
Many approaches are possible. Some trainees prefer to retain a constant increment reduction
while others will stagger the reduction. Other trainees retain a constant increment reduction while
maintaining a set number of repetitions. You may want to experiment with several decline pyramid
applications in quest of the one most congruent with your muscle response.
Not Recommended for Squatting
It should be noted that decline pyramiding would be advised against for beginning weight training
students as there is a high risk of injury associated with frequent-set/continuous training applications.
There is a rigid requirement of strong neural impulsing with associated with decline pyramiding
and strip-set training and the slightest wavering of concentration would result in flawed technique
which could easily invoke injury. It would be much more advisable to utilize decline pyramid applications
for the leg press movements as the injury-risk factor is greatly reduced.
Not Recommended for Shoulder Training
Decline pyramiding is also considered too risky for shoulder training. The shoulders are a highlysusceptible
region due to the weak construction of the joint. Ligaments and tendons, as well as the
muscles can easily become damaged if any lack of concentration is experienced by the trainee. Beginning
weight-training students would best be served by utilizing conventional training applications on
this highly-vulnerable area of the shoulders.
Exercises Designated for Decline Pyramiding
- Legs — Leg Press (Lying or 45° Angle variations)
- Calves — Standing Calf Raise
- Chest — Bench Press (All angles)
- Back — Lat Pulldown (All variations); Seated Row (All variations)
- Triceps — Cable Pressdown ( All variations)
- Biceps — Barbell Curl
Oxford Descending Pyramid
A variation on the decline pyramid is featured with the explanation of the Oxford Descending
Pyramid model. The so-deemed Oxford Descending Pyramid is a reversal of form as that which is
seen in the Delorme Ascending Pyramid model. The emphasis in the Oxford System is on maintaining
a High-End-Set-Load rep-count of 10 with a slight reduction in the amount of resistance employed.
This differs from the generally-applied or Classic Decline Pyramid schema which sees a reduction
in weight but at a sufficient amount to allow for increased rep-counts to be applied with each
set. Please see Decline Pyramid under Advanced Training Applications.
Specific Application
The Oxford system provides for a consistent rep-count (10) application with a slight reduction in
weight. This is to encourage a consistent Training-to-Failure formula. Two light-resistance warm-up
sets are allowed (assuming an escalation of the two is put into effect). The resistance as well as the
rep count is not taken to any exhaustive level. This approach is taken to allow for the muscle to be
fatigue-free at the commencement of the Descending Pyramid application. Every set is geared for 10
reps, and the minimum amount of weight should be removed with the emphasis placed on maintaining
the established 10-rep-to-failure set.
Let’s assume your goal is a HESL of 200 lbs for the first set of the bench press exercise, the Oxford
Descending Pyramid would be applied as follows (note that the warm-up is not established under
specific application only as a somewhat vague reference to 2 light warm-up sets. We have suggested
the warm-up configuration as to the recommended percentages and accompanying repcounts):

More sets can be added, but three sets is considered ample; as the three working sets model is instituted.
You will notice very little drop is seen with the resistance. This is done with an eye to the
idea that 3 x 10 reps is what many trainees set up for themselves as such it is assumed that the trainee
has a chance to complete three sets of ten reps. However, to encourage absolute perfection as well as
failure a short drop is established. You want to add to the amount of resistance decrease.
Note as well, the reference to 100% of ten rep-max refers to the 10-rep max relative to the particular
set that you are doing. It does not (or at least it should not) refer to the original 10-rep-max set
resistance to open the workout. This means that whenever the weight is reduced it is only reduced
enough to still allow for 10 reps (to failure) rather than to accommodate a goal of increasing the reps.
In other words, 100% HESL. refers to the fact that the weight for that set was selected to ensure that
no more than 10 reps are performed. This point was established above but I thought it was worth
repeating. Sometimes it is a little tricky filling in the blanks (as it were) for many of these advanced
training models as we are often left to speculate exactly what the point of the exercise and the actual
application of the exercise really is!
The concept of always going to failure with a 10-rep set is important in that it creates opportunity
for muscle growth. Muscle failure dictates that there will be a release of Growth Hormone (GH)
and Insulin-like Growth-factor 1. As we have learned (see Performance Nutrition, for detailed analysis).
Both of these hormones provide major stimulation for muscle growth. Once again, a time frame
(2-4 weeks) should be put on this advanced training model as a safeguard against falling into the
going-to-the-well-too-often syndrome. After all you do not have to abandon it for life you can always
come back to it. However, there are more programs to consider let us press on.
Combo Pyramiding
Decline pyramiding is often implemented in conjunction with an incline pyramid application.
This is deemed in Combo Pyramiding. However, due to the time constraints it is recommended that
the trainee escalate to a determined high-end set load by virtue of three escalations as opposed to the
recommended five set application noted above in a pure incline pyramid and then perform a three
descents as opposed to the five set application in a pure decline pyramid.
Reduced High-end Set Load as Safety Measure
The high-end set load should therefore be set below (approximately 25%) below the highest
possible high-end set load capability in order to reduce the risk of injury. The students should not
express alarm that the muscles will be deprived of proper attention as they will be extremely taxed
during the decline sets applications. Let us assume a trainee was able to work with a high-end set load
of 225 lbs for 6-8 repetitions. The high-end set load would be reduced to a 200 lbs high-end set load.
The applied schematic would appear as:

As was described in the previous sections on pyramiding, the combo pyramiding model can be
applied with different increments. Note however that utilizing different increment increases or decreases
on the incline portion or decline portion completely changes the taxation on the muscle and
hence the number of repetitions will have to be adjusted as a result. Refer back to the tables on decline
pyramiding to determine what kind of incremental decreases can be utilized to obtain consistent,
decreasing or increasing rep count on the decline portion of the combo pyramid.
Strip Setting
Strip-setting or “stripping” is a manner of training in which the trainee reaches the desired highend
set load (often an incline pyramid application is employed to arrive at the desired high-end set),
and then a declining-load application is applied. The declining-load application is one that sees the
trainee (following a sufficient rest period), working with a repeat set of the desired high-end set load.
When the set is completed, the trainee returns the bar and pauses only long enough to allow for the
removal of a portion of the load. Another set is immediately begun. This process is repeated until the
load is reduced to the starting weight.
The terms Strip-setting and Down-the-rack training are often referred to as Drop-setting as in
reducing (dropping) the weight. Once again the option is yours. The thinking behind our terminology
selection was based on the distinction between Strip-setting (as in stripping the plates off a bar or a
plate-loading machine) and Down-the-rack training as suggesting a reduction in resistance as in moving—
high to low—down the (dumbbell) rack or lessening the resistance by moving downward in the
denominations on the barbell rack. For purposes of correctness then we have chosen the variance in
terminology as opposed to the globally-applied “Drop-Sets” reference.
Several Approaches Possible
There may be several strip-set protocols applied. The stripping application may be performed
with small increment reductions or larger ones for fewer or greater rep counts. Remember, there is
no rest period per se, only a short pause (just long enough to reduce the weight). The student will
need to be cautious (particularly at the beginning), not to over-estimate what he/she can effectively
employ with reference to both; the amount of resistance applied, and the number of reps performed.
Strong Neural Impulsing Required
Stripping is an excellent way in which to encourage increased levels of motor-unit recruitment
but strong neural impulsing is required to provide for the safe, efficient application of this valuable
training approach. Internal and external injury risk is of concern with the utilization of strip-setting
due to the requirement of training through the lactic-acid buildup associated with continuous “repping-
out” as applied in strip-setting.
“Down-the-rack” Training
A variation of strip-setting is seen with the utilization of reduced-resistance applications with the
barbell or dumbbell racks. Generally Down-the-rack training applications are reserved for biceps
work but triceps training can be used and in the case of experienced performers, down-the-rack chest
and even shoulder routines can be employed. There are several variations that can be utilized in
down-the-rack training applications. Two standard approaches are; either a consistent rep-count or a
descending rep-count application or an increasing rep-count application. The three approaches are
outlined below.
Please note: the stipulations of 2 warm-ups + 3×10 for the Consistent Rep Count and Descending
Rep Count application and 12-10-8-6 for the Increasing Rep Count application. These stipulations
refer to the applied manner of escalation to the high-end set load. The approach taken to the
high-end set load will determine the approach that will be used for the strip-set application.
Different Applications Possible
The three application models outlined in the previous section can also be applied to strip-setting:
- Consistent Rep Count Application;
- Descending Rep Count Application;
- Ascending Rep Count Application.
Not Recommended for Squatting
It should be noted that strip-setting would be advised against for beginning weight training stu
dents as there is a high risk of injury associated with frequent-set/continuous training applications.
There is a rigid requirement of strong neural impulsing with associated with decline pyramiding and
strip-set training and the slightest wavering of concentration would result in flawed technique which
could easily invoke injury. It would be much more advisable to utilize decline pyramid and strip-set
applications for the leg press movements as the injury-risk factor is greatly reduced.
Not Recommended for Shoulder Training
Strip-setting is also considered too risky for shoulder training. The shoulders are a highlysusceptible
region due to the weak construction of the joint. Ligaments and tendons, as well as the
muscles can easily become damaged if any lack of concentration is experienced by the trainee. Beginning
weight-training students would best be served by utilizing conventional training applications on
this highly-vulnerable area of the shoulders.
Exercises Designated for Strip Setting
- Legs — Leg Press (Horizontal or 45° Angle variations)
- Calves — Standing Calf Raise
- Chest — Bench Press (All angles)
- Back — Lat Pulldown (All variations); Seated Row (All variations)
- Triceps — Cable Pressdown ( All variations)
- Biceps — Barbell Curl
Super-setting
Super-setting involves the back-to-back execution of two movements. The super-set can be applied
to either: two different body parts; or the same body part. The concept behind super-setting for
the same body part is to provide an exhaustive dual-attack upon the muscle in effort to promote
maximum motor-unit recruitment. The idea of super-setting two different body parts is to operationalize
the concept of agonist/antagonist muscle association (an explanation provided below), in
promoting growth and development. In this report an analysis of each Super-setting application will
be provided.
The terminology used for the Super-set section is based on the distinctions between Same-Body-
Part Super-Set (which is often called a Compound Set) and Different-Body-Parts Super Set. The
Compound Set reference is a good one but it was thought that the distinction between Same and
Different offered an immediate categorization. As such we have structured the text accordingly. Feel
free to use the Compound Set reference if you prefer it.
Another manner of providing for a cross referenced configuration in the super-sets advanced
training application is to perform one eccentric-contraction-emphasis (stretch-reflex) exercise with a
concentric-contraction (peak contraction) exercise. It is important to address the importance of safety
with this approach. One school of though states that a cold muscle should never be stretched so
therefore the stretch-position exercise should be done after the peak contraction exercise. (This point
was covered earlier in the considerations for stretch-position exercises as a separate training applicaAdvanced
tion). The other line-of-thinking is that if the stretch-position exercise is performed following the
peak-contraction exercise the considerations for fatigue could lead to sloppy training and less muscle
response to the gravity-influenced force of the weight.
Several key points are raised by Ironman magazine Editor-in-Chief and prolific author Steve
Holman (1999). You can get even more fiber recruitment if you use stretch position movements as
one of the exercises in a super-set. Furthermore, when you put a muscle in an elongated state prior to
the (peak) contraction you can trigger a (stronger) neuromuscular response. The body senses the
(impending) danger so it recruits more fibers to contract in order to prevent injury. Research suggests
that when you perform a stretch-position exercise prior to your second set of mid-range exercise, the
myotatic (stretch) reflex conditions more fibers to fire during the mid-range movement. If stretchposition
exercises are to be used in your Super-Sets program, it is better to use them first as the exercise
for increased contraction and avoidance of injury. Holman cautions against going too heavy or
too far in the stretch-position movements. He states, Going too heavy on stretch-position exercises
can diffuse the myotatic reflex. Stay with medium weights. Note these points were raised under the
heading of Stretch-position Positions of Flexion Training presented earlier but it was decided that the
cautions deserved repeating here in the considerations for Super-Setting.
Holman also explains some of the basic benefits of super-setting with reference to the pump that
it provides for the muscles. A pump can build more capillaries in a muscle, which in turn can give it
more girth and make it more efficient at removing waste products as well as pumping in needed
growth nutrients and fuel such as (muscle) creatine. Another benefit he alludes to is the fact that
changing the pH levels of the blood as a result of muscle burn and lactic-acid release can create intense
surges in growth hormone (GH). GH is one of the recognized giants of the considered Anabolic
Hormones!
Same Body-part Application
The approach to be taken with same-body-part super-setting is to utilize two different exercise
categories. The trainee would select one mass-mover exercise and one isolation exercise. Two massmover
exercises would not prove effective in providing for maximum motor-unit recruitment within
the muscles because there would be too much of a sacrifice in the amount of resistance that would
be applied in order to permit the completion of two (back-to-back) power movements. Two isolation
movements would not be selected as the considerations for maximum loading would not be optimally
applied. The most effective approach to super-setting is then the one that allows for maximum
exertion to be placed upon the muscle without sacrificing the all-important motor-unit recruitment
component.
Benefits Attributed to Mass-mover/Isolator Combination
The mass-mover/isolator approach is seen then as the most effective manner in which to utilize
the highly-effective super-setting training application because such approach stimulates the muscle
from two perspectives. The power movement encourages maximum hypertrophy of the crosssectional
area of the muscle’s white fibers while the performance of an isolation movement immediately
following, encourages additional motor-unit recruitment which stimulates the shaping, and
contouring of the muscle.
Considerations for Variation in Super-set Exercise Combination
There are several considerations for variation of movement applications that can be utilized with
the mass-mover/isolator combination super-setting approach. These variations would include:
Variation of Hand Position
- Bench Press (Prorated Grip)
- D.B. Flye (Semi-Pronated Grip)
Variation of Movement Plane
- Bench Press (Vertical Plane)
- Cable Cross-Over (Oblique Plane)
Variation in Movement Direction
- Bench Press (Abduction—Away From The Body)
- Pec Deck (Adduction—Toward The Body)
Variation of Exercise Classification:
- Bench Press (Free Weight)
- Pec Deck (Variable-Resistance)
- Bench Press (Free Weight)
- Cable Cross (Cable/Plate-Stack)
Variation in Mass-mover/Isolator Accentuation
It is possible to apply a variation of movement accentuation with the use of both “mass-mover”
and “isolator” exercises from all three exercise classifications. It is also effective to use two movements
from a similar exercise classification. An example would be two free-weight movements (incline
bench press/supine flye); or, two variable-resistance movements (seated machine press/pec
deck). Generally, if two movements are used from the same classification they would be of the
free-weight variety. An effective approach is to utilize two different angles-of-application in the combination
selection. Let us now examine how to apply super-setting with the use of a model to outline
various combinations for; chest, triceps, and biceps.
Working Models
Chest
In this example, the “mass-mover” is a free-weight movement and the “isolator” is a variable resistance
movement.
- Bench Press (Free-Weight)
- Pec Deck (Variable Resistance)
This example is the “reverse” application that has the “mass-mover” as a variable-resistance exercise
and the “isolator” as a free-weight movement.
- Seated Press (Variable Resistance)
- Flye (Free-Weight)
In this example, movements from the same classification are outlined.
- Bench Press (Free-Weight)
- D.B. Flye/Press (Free-Weight)
Triceps
In this example, the cable classification will be brought in. In this scenario the combination
would see the “mass-mover” as free-weight movement and the “isolator” as a cable movement.
- Triceps Extensions (Free-Weight)
- Single-Arm Cable Reverse Extensions (Cable)
The reverse would see the “mass-mover” as a cable movement and the “isolator” as a freeweight
movement.
- Pressdown (Cable)
- Kickback (Free-Weight)
In this example, movements from the same clarification are outlined
- Lying Triceps Extension (Free-Weight)
- Kickback (Free-Weight)
Biceps
The working models for the biceps follow the same progression as that outlined for the triceps.
- Barbell Curl (Free-Weight)
- Single-Arm Cable Curl (Cable)
- Barbell Cable Curl (Cable)
- D.B Concentration Curl (Free-Weight)
- Barbell Curl (Free-Weight)
- D.B. Preacher Curl (Free-Weight)
The following movement tandem offers a free-weight “mass-mover” exercise and a variableresistance
“peaking” exercise.
- Barbell Curl (Free-Weight)
- Machine Preacher (Variable Resistance)
Different Body-parts Application
Agonist/Antagonist Muscle Relationship
The premise of super-setting two different but related (i.e.; biceps/triceps), body parts is based
upon the concept of the agonist/antagonist muscle relationship which is fundamental to muscle contraction.
Muscles that shorten during the concentric phase of specific exercise are called the agonists
(primary movers); for example, in a barbell curl, the biceps are agonists because they must contract in
order to cause elbow flexion. Muscles that lengthen during the concentric phase of a movement are
called the antagonists; for example, during a barbell curl, the triceps lengthen as elbow flexion occurs
and are thus the antagonists. The force relationship between the agonists and the antagonists is what
provides muscular control. When the agonist muscle group contracts to produce motion at an articulation
(joint), the antagonists relax in order to allow for a full range-of-motion to occur. This process
is called reciprocal inhibition. Without reciprocal inhibition control of movement would not be possible.
Looking for the “Pump”
Since muscle actions involve both the agonist and antagonist muscle groups, exercise combinations
that provide a reverse action of the agonists and antagonists would be effective in providing for
enhanced growth and development benefits of the muscle groups involved. Trainees who combine
agonists and antagonists muscle groups frequently marvel at the “pump” they get following such applications.
What Body Parts Go Together?
The body parts considered for agonist/antagonist super-setting combinations would be:
- Chest / Back
- Biceps / Triceps
- Quadriceps / Hamstrings
Recommended Set and Rep Combinations
Generally the application of agonist/antagonist super-setting would involve 2-3 sets of 8-10 repetitions;
however, a number of variations are possible.
Weight Selection
The consideration for weight-selection is a crucial one. The determinations are based upon the
fact that the super-set is performed to provide a variation of accentuation upon the muscle. The application
of super-setting is utilized to promote (not detract) motor-unit recruitment. If too much
weight is applied in the first movement there will be little left for the second movement. Remember,
the super-set concept is one that calls for immediate second-set applications. If too little recruitment
is applied to the muscle, the exertion and subsequent resultant effects will be minimized, thus defeating
the premise of the super-set application.
A general guideline would be to select a resistance that could be performed for 10 repetitions in
the initial movement that will not call for a drastic reduction in either the number of reps or in the
amount of weight that can be applied for 8-10 reps in the second movement. It should be realized
that even though different body parts are being worked there is relationship between the two muscle
groups (agonist/antagonist) and, as such, there will be a slight reduction in power output.
We are not machines; fatigue can set in with respect to oxygen uptake and subsequent utilization
by both the muscular and cardiovascular respiratory systems. Experimentation will provide the answer
to this question. You will notice a gradual increase in the stamina of the muscle involved after a
short indoctrination into super-setting applications.
Working Models
In our presented models, an outline of the movements that can be applied in combination for
the chest/back – biceps/triceps -quadriceps/hamstrings muscle groups will be presented for the
“Different Body-parts” super-setting application. You will note the considerations for:
- Training Mode — free-weight, cable/plate-stack, variable-resistance;
- Type of Contraction — isotonic, isokinetic;
- Exercise Classification — mass-mover, isolator, peaker;
- Type of Grip — pronated, semi-pronated, supinated;
- Angle-of-application — compatibility-of-angle frequently taken into account.
Chest/Back
There is a wide variety of exercise combinations available with the chest/back different body
parts super-setting model. The considerations outlined above will be taken into account with the presented
combinations.
- Bench Press
- Bent-over Barbell Row
- Incline Bench Press
- T-bar Row
- Decline Bench Press
- Front Lat Pulldown
- Supine D.B. Press
- Machine Seated Row
- Pec-Deck
- Single-arm Cable Row
Note the various considerations as outlined in the opening remarks preceding the list of exercise
combinations. All combinations are structured to feature a same angle-of-approach with the exception
of the fifth combination where a vertical posture is applied for the chest and a bent-over posture
is applied for the back movements. Also note that all combinations feature mass-mover exercises,
again with the exception of the fifth combination which features an isolation exercise combination.
Biceps/Triceps
In our second example there are a wide range of possibilities available for the purposes of establishing
effective exercise combinations. Once again, the student would be advised to take into account
the considerations for program design as outlined in the explanation of considerations for exercise
grouping presented above.
- Barbell Curl
- Lying Triceps Extension
- Cambered-bar Curl
- V-bar Pressdown
- Machine Preacher Curl
- Triceps Kickback
- Cable Curl
- Reverse-grip Pressdown
- Alt. D.B. Curl
- Single-arm Reverse-grip Pressdown
Quadriceps/Hamstrings
The spectrum of exercise combinations for the quadriceps and hamstrings muscle groups is
much more restricted than the list of available combinations for the preceding Chest/Back and Biceps/
Triceps body part groupings. The restriction is founded mainly on the premise that it is not
advisable to super-set the power movements for the legs due to the high injury factor associated with
such practice. The Squat/Hack-squat exercise combination would be ill-advised as would the Hacksquat/
Front Squat combination. We might consider the power movement combination of Hacksquat/
Lying Leg Press to accentuate the quadriceps and hamstrings respectively but even this combination
must be applied with care or injuries can easily result.
- Seated Leg Extension
- Lying Leg Curl
- Alt. Leg Extension
- Standing Leg Curl
- Lying Leg Press
No Set Rules-of-approach
It should be noted that there are no set rules-of-application in super-setting. The general idea
would be to provide a variation in angles movement planes and directions and a different accentuation
upon the muscle through the different contraction types. Obviously the possible combinations
are vast. That is the beauty of the pursuit of weight-resistance training; individual preferences and
muscle responses will provide the direction. Students are encouraged to experiment with various
combinations in order to discover which particular protocols work for themselves.
Note of Caution
Super-setting requires energy, stamina, and most of all; intense concentration in order to provide
for the safe, efficient application of this highly-effective training approach. Work slowly and deliberately
through both sets of the super-set combination with strong neural-impulsing and slow speedof-
contraction movement applications in effort to achieve the greatest benefit.
Body Parts Not to Super-set
It should be noted, that the exercises for the lower back, and the “mass-mover” exercises would
not be employed as a lead in for a super-set application for the legs. As well, super-setting applications
would not be utilized for the exercises for the shoulders by beginning weight-training students
as the shoulders are extremely vulnerable to injury when under duress. More experienced trainees
may apply super-set applications to their shoulder training but only with highly-concentrated execution.
Shoulder Joint Weak and Muscles Easily Fatigued
Remember the shoulder joint is a weakly-constructed joint and the muscles of the shoulder are
not very strong and fatigue easily. Both of these considerations would indicate that a high-degree of
caution is required if super-setting applications are to be utilized in the student’s shoulder training
regime.
How to Apply Super-setting for Shoulders
If super-sets are to be utilized, two pressing movements should not be employed. A pressing
movement should be followed by a raises movement. In addition, the deltoid accentuation should be
altered. The trainee would perform one pressing movement (military press) for accentuation of the
front deltoid head and then follow with a light lateral raise movement to stimulate the medial deltoid
head or a bent-over lateral raise movement to emphasize the posterior deltoid head region.
It should be made clear however that even such precautionary measures such as those outlined
above still leave the trainee vulnerable to potential injury due to the fact that the shoulders will become
fatigued with the super-set application and injury risk is prevalent in the subsequent super-set
applications.
Triple-setting or Giant-setting
We do not want to confuse you right off the bat here with the terminology. Many (in fact most)
coaches and trainers refer to a triple set as (obviously) three exercise done in a row. Programs that
call for a four-exercises-in-succession package are called Giant Sets. Because it is felt that four exercises
in succession is too demanding for both mind and muscle, we do not include a four-set configuration
to the CORFIT program portfolio. As such, we have utilized the term Giant Set in reference
to a three-in-a-row exercise package. However, we open the door for you to experiment with a
four-in-a-row package in manner of providing opportunity for the training experience. With that said
however, we suggest you train light (and with abbreviated rep counts) in effort to garner the best results
and at the same time provide for a reduced injury-risk factor. We have not included the 4-
successive exercise Giant Sets here as we simply do not want to go into an area we feel we should not
tread. With that out of the way, we shall press on.
The concept behind super-setting is fundamentally repeated with the utilization of giant-setting.
However, giant-setting calls for three movements for the same muscle group to be performed rather
than two. The considerations for varied accentuation to be exerted upon the muscle in order to promote
muscle hypertrophy and stamina in creating a sharply-defined muscular structure remain consistent.
In addition, the premise of utilizing a varied attack upon the muscles is also repeated with
considerations for a variation of:
- Training Mode — free-weight, cable/plate-stack, variable-resistance;
- Type of Contraction — isotonic, isokinetic;
- Exercise Classification — mass-mover, isolator, peaker;
- Type of Grip — pronated, semi-pronated, supinated;
- Angle-of-application — compatibility-of-angle frequently taken into account.
Students should refer to the presented chart in the preceding section on super-setting in order to
re-establish the proper exercise selection. For purposes of outlining the approaches to take with respect
to giant-setting we shall present a working model for chest, triceps and biceps program schematics.
Working Models
Chest
- Incline Bench Press (Mass-Mover, Free-Weight)
- Supine Flye/Press (Isolator, Free-Weight )
- Pec Deck (Peaker, Variable-Resistance)
- Decline Bench Press (Mass-Mover, Free-Weight)
- Pec Deck (Peaker, Variable-Resistance)
- Supine Flye (Peaker, Free-Weight)
Note the variance in program design of the first model and the second model. The giant set
should include one mass-mover and two other movements either an isolator and peaker or two peakers.
You will note the movement variance provides for a different hand position and angle-of application
as well as a different exercise category and classification. These considerations should be addressed
throughout the giant-set program design.
Triceps
- Lying Triceps Extension (Mass-Mover, Free-Weight)
- Angle-Bar Pressdown (Isolator, Cable)
- Triceps kickback (Peaker, Free-Weight)
- Straight-Bar Pressdown (Mass-Mover, Cable)
- Dumbbell Extension (Isolator, Free-weight)
- Single-Arm Cable Extensions (Peaker, Cable)
You will note an absence of a variable-resistance movement in this model. This is due to the fact
that we have not included a variable-resistance triceps movement in the Additional Exercises list as
most fitness centers do not provide such a machine. If your facility has variable resistance machinery
for triceps training then you may want to include a variable resistance movement in the giant-set trio.
Biceps
- Barbell Curl (Mass-Mover, Free-Weight)
- Alternate Dumbbell Curl (Isolator, Free-Weight)
- Single-Arm Cable Curl (Peaker, Cable)
- Double-Arm Cable Curl (Mass-Mover, Cable)
- Preacher Curl Machine (Isolator, Variable-Resistance)
- Concentration Curl (Peaker, Free-Weight)
Negative Training (“Negatives”)
The concept of negative-training is to accentuate the eccentric contraction phase of the movement
in effort to promote muscle growth. Negative-training provides an effective manner in which
to promote strength and stamina increases in the stronger (40%) eccentric contraction phase of the
movement. Negative-training is seen as highly-beneficial in that the eccentric contraction phase of
the movement is frequently applied with less than optimum concentration by many aspiring trainees.
By focusing upon the often-overlooked eccentric contraction phase, the student is able to implement
a most effective training application into his/her regime.
Proper Application
Negative-training applications are best utilized with the aid of the training partner as they involve
the slow speed-of-contraction applications in the lowering of the weight. The approach to negatives
is one that sees the trainee escalate to a high-end set-load by virtue of pyramiding and then perform
three additional sets with the high-end set load by virtue of exaggerated slow-speed-of-contraction
applications in the negative (eccentric) phase of the movement. The movement application is applied
over a 7-10 second time span depending upon the exercise and the desired “negative” accentuation.
If the movement begins to move too quickly, the spotter can assist in slowing down the speed-of
contraction in the eccentric phase.
High-end Set Loading
Negative-training can also be utilized in providing for additional loading. In this application, the
trainee advances beyond the normal high-end-set load by virtue of spotter-assisted escalation to a
weight that is heavier than can be applied without spotting support. This is possible because of the
fact that muscle is stronger in the eccentric phase than it is in the concentric phase. The new plateau
is considered then a high-end set plus-load. The weight is lowered by the trainee with no assistance
from the spotter, and then the spotter would assist the trainee during the concentric phase of the
movement. It is essential that the trainee maintain proper form throughout the movement application
in order to reduce the risk of injury. Remember, despite being stronger in the eccentric contraction
phase of the lift an astonishing 80% of muscular-related injuries occur during this phase of the
movement application. The high injury rate would indicate that less than maximum concentration is
devoted to the eccentric contraction phase of the movement.
Negative-training Applied to Mass-movers
Generally negative-training is applied to the “mass-mover” exercises as the barbell applications allow
for a more readily-facilitated balance factor which provides a measure of reduced injury-risk. There
are certain “isolation” movements that can also be utilized for negative-training applications and they
can be incorporated into the student’s program following the initiation into negative-training. Movements
that would be utilized in negative-training applications are presented below.
Exercises to Be Utilized In Negative-training
- Legs — Leg Press (Horizontal or 45° Angle), Leg Extension, Leg Curl
- Chest — Bench Press (All Angles)
- Back — Pulldown (All Applications), Seated Row (All Applications)
- Shoulders — Military Press, Lateral Raise
- Triceps — Pressdowns (All Applications), Lying Extension
- Biceps — Barbell Curl
- Trapezius — Barbell Shrugs, Dumbbell Shrugs
- Calves — Standing Calf Raise, Donkey Calf Raise
Several other movements can be utilized in a negative-training application; however, it is suggested
that the “mass-mover” exercise inventory be utilized at the outset. The high-end set plus-load
negative-training application should not be used at this time. Isolation exercises can be used later for
negative-training applications. Examples of isolation exercises that can be applied are: Dumbbell
Chest Presses, Alternate Dumbbell Curl. The Alternate D.B. Curl movement is suggested in the latter
part of the program. The Dumbell Chest presses are considered too risky at this time and are left out
of the presented portfolio of negative-training movements. The D.B. Shoulder Press inventory is also
discarded and is not recommended due to the high-risk factory associated with the dumbbell shoulder
pressing movements.
Circuit Training: Analyzing the Pros and Cons
One of the most popular advents to appear on the fitness agenda of many erstwhile athletes was
that which was thought to produce a dual-pronged training benefit. Circuit training became the craze
of the eighties as many coaches and trainers thought that the application of a training concept that
was considered to be beneficial from both an aerobic and anaerobic perspective would prove to be
highly valuable for both aerobics athletes and weight-training enthusiasts alike.
The concept of circuit training is to have the athlete perform a series of exercises (the program
was usually designed to work the entire muscular system) without resting between exercises. The
workout regime would include a single set for each of the exercises selected in the program to be
performed without rest. The trainee was encouraged to move from one training station to another as
quickly as possible. This approach was taken to encourage the trainee to maintain an elevated heart
rate while working the entire muscular structure. It was proposed that by working the entire muscular
system, the trainee would gain the normally-attributed advantages associated with weight resistance
training while providing for additional benefits associated with aerobic capacity enhancement.
Trying to Kill Two Birds with One Stone
The problems associated with the concept of providing for a dual-pronged benefit are found in
the premise that while attempting to gain a double advantage, the reality is that the trainee is actually
reducing both benefits. That is, the application of trying to kill-two-birds-with-one-stone will actually
serve to only wound them both. For a true killer workout for each of aerobic and anaerobic training
applications it would be necessary to provide for a separate and distinct training application for each
training mode This approach would have the athlete applying an anaerobic training regime and an
aerobic training regime separately. With separate training utilized, the trainee would then be able to
realize the full potential of both anaerobic and aerobic training Why then, would anyone want to
yield the benefits of maximum aerobic and anaerobic training potential?
Enhanced Anaerobic and Aerobic Performance Proposed
The answer lies in the fact that many erstwhile coaches have their athletes working under the belief
that addressing the issue of providing for both anaerobic (strength gain) and aerobic (cardiovascular
fitness improvement) will provide the athlete with his/her optimum opportunity for enhanced
fitness level. Such is not the case as neither optimum strength nor maximum aerobic capacity enhancement
can be achieved with circuit training.
Insufficient Recovery Period
With the trainee moving rapidly from one station to another in haste dictates that insufficient
time is allotted to provide for optimal recovery before the next series of exercises is performed.
Without sufficient rest period allocation, anaerobic production is reduced. As well, by moving from
one body part to another there is insufficient preparation awarded in effort to promote the highest
intensity component for the all-important mind/muscle connection in the training. By not providing
for maximum levels of mind/muscle recruitment, the potential for anaerobic training benefit is lost!
In addition, without the maximal mind/muscle recruitment, the trainee is exposed to increased injury
potential.
Increased Injury Risk
With shortened rest period allotment, resulting in increased lactic-acid build-and with less oxygen
available and a fatigue factor already setting in, the trainee is exposed to increased injury potential! An
ally by design, the beneficial considerations for circuit training are exposed as more risk than reward
with regard to injury potential. With reference made to anaerobic training it can be easily seen that
muscle growth and development (and the resulting strength and power) will be greatly reduced as a
result of circuit training due to the inability of the trainee to provide sufficient rest and proper focus
upon the next exercise.
Reduced Aerobic Fitness Level Potential
The reduction in optimal fitness level enhancement can also be seen from an aerobic standpoint
with circuit training. Fleck et al offered that there was no significant evidence of aerobic benefit attributed
to circuit training. Other studies have shown that there might be a 4-8% cardio fitness improvement
as a result of circuit training but these figures pale in comparison to the suggested increase
in aerobic fitness as gained through task-specific aerobic (cardio) training. Figures here can
vary dramatically from a low of 15-20% (in general) gain to amazing numbers of several hundred
percentage points above previous cardio fitness levels!
Clearly, it would be advisable that the trainee focus on each training application in order to gain
the most out of each training venue.
Circuit Training Applications
The primary purpose of circuit training appears to be one that is centered upon improving one’s
aerobic fitness capacity first with an added rider of also improving one’s strength and power. Interestingly,
for those aerobic athletes who would otherwise not consider weight resistance training, the
circuit training application provides an application beyond that which was previously employed. In
this regard, the circuit application can be seen as an added benefit. However, when it is considered
that with proper direction and coaching, the aerobic athlete who is guided toward a distinct training
philosophy, would enjoy a major edge over the athlete who applies only a circuit training approach to
his/her training. That is he/she would train specifically with an aerobic regime and then apply an
anaerobic (weight resistance) training program. Task specific training would provide an advantage for
the athlete over his/her counterpart who utilizes a circuit training program into his/her regime. With
this point “hammered home” we shall now examine the various aspects of circuit training
Various Approaches Available
The basic approach to circuit training is to design a program that includes one exercise for each
body part and to complete a series. As one advances in their circuit training additional sets and Exercises
can be employed.
Other Circuit training applications actually include weight resistance training exercises that are
sprinkled in with cardio bouts of exercises such as a short (2-5 minutes) sprint on the bike between
additional circuit training applications. That is, the trainee would complete a set of exercises for
his/her circuit then right the bike and then come back for a second and/or third set. Many combinations
are obviously possible here. Another advent of circuit training would see the trainee performing
a series of exercise between weight training sets. For example between the bench press and the lat
pulldown exercises the trainee performs a series of lunges or jumping jacks or push-ups, etcetera.
Obviously the variance is potentially endless.
The weight training sets can be performed for any number of repetitions. Generally 15-20 reps
are employed for those sessions focussing on cardio accentuation in the weight training application
all the way down to 10 repetitions. More than 20 repetitions are not suggested as injuries can be invited
with lengthy (high rep-count) sets. (Although many coaches and athletes advocate the employment
of 25-30 reps in their circuit training program in order to add intensity to the circuit. Less than
10 reps sets are not generally used as this would be more suited for separate anaerobic (weight resistance
training applications).
Fundamental Premise of Circuit Training
The fundamental premise associated with circuit training is to provide for an elevated heart rate
throughout the training session. The key consideration of circuit training therefore can actually be
addressed without the trainee being forced to incur the normally associated evils of circuit training!
For example: It would be much more advisable for the trainee to perform a series of exercise on the
same body part with exactly the same exercise for three sets. The key here is that with a short rest
period the heart rate will stay elevated. The added benefit is that the trainee can focus on what
he/she is doing by main training a strong mind/muscle connection. Without having to switch training
areas and without having to reprocess the neural impulse signaling to other parts of the body, the
trainee can focus on the body part being worked before moving on the next exercise. This approach
would provide for the all-important heart rate elevation while providing for increased safety (by remaining
focused with a high degree of mind/muscle activity.
As well, an additional benefit would be seen in the fact that increased muscle hypertrophy can be
realized through this type of circuit training as opposed to the conventional application. By staying
on one body part, and remaining highly-focused, the athlete can employ higher intensity into the
weight training aspects of the circuit training application. The aerobic benefits would not be sacrificed
while the anaerobic benefit (muscle growth and development) would be greatly enhanced. Remember
however, that whenever a circuit training application is employed there is no avoiding the
fact that you are trying to kill two birds with one stone and that is never as effective as training your
sights on each target individually!
With that said there is one circuit training application that I often enjoy implementing into my
workout. (You see even if you are from the counter point side of the debate there is always a way to
get involved in one can be a beneficial approach to training. It is an effective measure for testing ourselves
on our general fitness level. It may not allow us to run faster or longer or to ride the bike or
apply out rowing workout any better. But you cannot say irrevocably -that it will not help at all. In
addition, from an intangible perspective (particularly if your workouts are getting stale or you have
trouble getting up for the workout) it can inject a major training boost psychologically as well as physiologically!
Safe, Effective and Fun Circuit Applications
If you truly want to test your ability to increase your heart rate while performing full bore weighttraining
applications try this one. It is safe and it is demanding (thus potentially highly beneficial). It is
also simple. You do not have to run all over the gym to do it!
Perform a series of back-to back applications of leg press and bench press. The leg press and
bench press combination was selected on the basis that both exercises involve all of the major muscles
of the lower and upper body. As such, they are demanding exercises that require a great amount
of oxygen! Start with a weight that you could perform 20 times and bang out 15 reps on leg press.
Then move to the bench press and do the same thing. This is done following an initiation warm-up
on both exercises. (Hopefully the two stations are close together in your gym so that you do not have
to run or you do not waste too much time getting to the next station.) The following set would have
the trainee adding a little weight. This added set can be viewed as the main stream set to be used
throughout the entire series of exercise. Once again many applications can be employed here.
In the beginning stages it would be advised that the trainee not attempt to add more weight for
the sets but to stay with a same-weight application throughout the routine. The routine can be established
as 5 sets all the way up to 10-12 or even 15 sets. One approach might be to perform a series of
five sets for three workouts and then build up to 8 sets for the workout. Then added groups of 5 sets
can be employed and then repeated three times for a total of 15 sets. Have fun—all of it can prove to
be beneficial. Remember, do not train this way at the exclusion of the standard leg and chest training
or you will suffer the pitfalls of circuit training as outlined throughout this report. This approach to
circuit training will provide for the desired elevated heart rate (you betcha!) and will allow for full
concentration on the exercises at hand. Interestingly, as outlined earlier it can be an effective motivator
for the athlete. Nothing brings out the best in us like a challenge. One that is sensible logical and
beneficial! It can be noted additional exercises can be thrown in to the mix. Perhaps a back exercise
could be added to the routine to hit both the muscles and the cardio vascular and cardio respiratory
systems system even harder!
Concentration
It is important to remember with this application that high concentration is required in all training
applications particularly during multiple set applications as seen with our version of the circuit.
The term circuit is used here in somewhat of a jesting as obviously it is not a circuit but the point
being made is that it is not the circuit that is important but the concept of applying an anaerobic
workout while main training an elevated heart rate. This can be actually best accomplished by emAdvanced
ploying those exercises that demand the greatest amount of oxygen. Therefore it is not the circuit
that is vital in circuit training, but rather, it is the factors related to oxygen uptake, delivery and subsequent
utilization during an anaerobic exercise that is of paramount concern!
Note: Please remember to apply full range-of-motion, and slow speed of contraction movement
applications throughout the workout. No hurried or herky-jerky applications here please!
Advanced Training – Phase II
December 10, 2008 by Big Mojo
Filed under Phase2, Training Programs
Advanced Training — Phase II
Extended-sets Training
Extended-sets training offers the trainee an opportunity to increase stamina in the muscle with
an accompanying increase in muscle density which serves to provide for increases in overall muscle
strength. The component of muscle density offers a training-effect that lies between muscle size and
muscle definition. This is where the concept of the misuse of the term muscle hypertrophy can be
exemplified. Muscle density does not mean adding size or definition (per se) but it does provide for
an overall improvement (advancement) of what is often referred to as muscle integrity. That is; there
is experienced an increased dimension of depth, with an added component attached to the aesthetics
(appearance) of the musculature. Muscle density can also bring with it a component of stamina in
terms of working with heavier (although not the heaviest) loads.
For example if 10 reps are possible with a HESL then increases can be made with reference to
the rep count. If on the second and third sets of a three-set application, the trainee tires quickly, with
the result that the reps are reduced dramatically, the stamina component can allow for rep counts to
be maintained at a higher level in subsequent high end sets. It can also lead to increased rep-count
applications in the first set of the High-End-Set-Load, thus signifying that additional weight could
now be used to establish a new plateau for the High-End-Set-Load. Muscle stamina, then can be seen
as a very valuable training adaptation. Specific program applications can be implemented to address
more succinctly the component of stamina as opposed to allowing for it to happen by happenchance
(as a result of the general work applications).
Specific Application
The application of the Extended-Sets training is implemented to provide (once again) a component
of additional fiber recruitment. The concept of extending would suggest greater TUT and as
such a component of stamina would be provided which lends itself automatically for muscle hypertrophy
(counter to the proposed suggestion of what hypertrophy really means) from a density perspective.
The Extended-Sets concept allows for a unique approach that addresses the now established
Across-the-Board principle of the give-and-take syndrome of weight-resistance training. To explain;
you cannot simply ask your muscles to do more work; they must be nurtured into position through
training adaptation. The Extended-Sets training application sees the conventional set turned into a
continuous three-set application. The difference here is that the three sets are not done on the same
angle but rather at different angles.
Staying with the bench press exercise we know that the strongest angle is the Decline with the
Supine the next strongest with the Incline as the weakest angle-of-application. In order to perform an
Extended-Sets Bench Press schema the training program would call for the reverse order of angles to
be employed. That is; the trainee would begin with the weakest angle and move to the strongest; (Incline,
Supine, Decline) in one continuous or, Extended set. The added strength gained as a result of
the more opportune angle for strength as well as the additional fibers brought in. Note that most
training experts who advocate the Extended-Sets training application do so with a consistent-repcount
application; however, it is virtually impossible to be able to work at the HESL with the same
rep-count for all three sets. Therefore, under the CORFIT training approach we advocate a Descending-
Rep-Count application that sees at least one (and most often, two reps) being dropped from the
rep-count figure.
We have selected the 1-rep descent for the die-hards who may be reluctant to yield. Our thinking
here is that a reduction of two reps would not be applied with the result being that it would either be
too risky, or it just might be abandoned altogether (work with me here and let us see what we can
accomplish). Look for increased stamina and accompanying muscle density with this type of training
application. Again, it is a matter of give and take. Do not ask for the impossible, as injuries can become
a built-in evil. Recognize the added intensity factor and incorporate it into your thinking in order
to provide proper programming for you and your clients.

Do Not Confuse Advanced Training Applications
Extended sets training suggest a similar training mode for three anlges in a continous three set
application. This is in contrast to to the CORFIT triple set application in that the CORFIT triple
utilizes three different types of exercise (mass mover, isolator, peaker) and as well as training mode
(isotonic, Isokinetic, cable) and angle (incline, flat, decline).
The Extended-Sets training approach can be taken with other muscle groups obviously. Now,
one point to bring up again that is crucial is the one about confusing one advanced training application
with another! Recall, the Extended Sets application shown above saw the trainee working
through three different angles with a constant mode (Free-weight Mass Mover) application. There are
many variables that can be implemented into the Extended-Sets Advanced Training application.
However, it is vital that you do not begin to bring in a program that is really an example of a triple set
(also called a giant set) and not an example of an extended sets application. For example: let us consider
a workout for the Biceps. In the example presented below we see a schema that is not an extended
sets training model but rather an example of a triple set which of course is covered under the
triple set section covered in this chapter. The difference is found in the variance in training modes,
angles and classifications. This is not what the Extended-Sets training model looks like at all!

The Extended-Sets training application can be employed in different ways to include all muscle
groups. Put a few programs together and see how they pan out for you! Remember, as with all of the
advanced programs, utilize them for a short period of time; generally no more than three weeks otherwise
they might run stale (curbing growth and development or worse, they might push you into the
overtraining syndrome.
Rest-pause—or more accurately, Pause-rest
I encounter a problem with this suggested training approach from the “get-go” in that the name
itself would appear to be reversed. The rest-pause suggests a short rest but either it is to be considered
a rest or pause. To imply that it is actually both (which is fine then why don’t we simply name
it exactly what it is; a pause-type of rest or a Pause-Rest. Semantics aside (English 102 or is it 201; is
upstairs in room 101). There is more to the assessment involved in the name and more significantly
the approach to be taken with regards to the training concept.
To explain; The idea behind this approach is to complete a (HESL) set to failure and then rerack
the weight, wait 15 seconds and then continue the set. We are “splitting hairs” here with this
approach. The 15 seconds employed for the “pause” is really too long for a pause and somewhat too
short for a “rest” per se. I know that is what the premise behind the exercise is all about. The problem
though rests with the fact that we are re-racking the weight and then staring all-over again to
prepare for the actual lifting –lowering of the weight by getting the weights off the rack and into the
starting position. This activity tires the trainee out in that the energy of the muscles as well as the
energy-requiring focus of the mind to re-establish training position detracts from the sought-after
succinctly-applied taxation of the muscles as seen with the actual training application. I would prefer
to apply the “Pause-Rest” (you will forgive me) principle with an approach that sees the trainee maintaining
a (virtual) “ready position.” This is accomplished through the use of a training rack with the
proper placement of the pins to allow for a “Pause-for-the-Cause” strength-gaining training application.
With respect to the other consideration as suggested by the advocates of the deemed “Rest-
Pause” system is related to the length (say15 seconds rest or pause) of time. Fifteen seconds might be
considered too long therefore a reduced duration ranging from 4-7 seconds (depending on the specific
exercise) would be effective. In addition, the short pause-rest could be carried out with the
weight held in the fully extended concentric-contraction finish-position –with the added strengthgiving
component of three-joint support as in the bench press or shoulder press movements for example.
This could be a preferred application over the re-racking of the weight because of the extend
the contraction time (recall time under tension or TUT). The weight could also be maintained in the
fully-contracted eccentric-contraction finish position but this would be best served with the utilization
of the powered pin placements of the rack in manner of providing for the avoidance of undue
strain on the connective tissues of the muscles. The objective with the Pause-Rest regime is to provide
for increases muscle force with the considerations given to muscle stamina-strength. Obviously
added volumes (sets and or, reps) can be applied for sheer stamina but what is being sought here is
increasing the force of the muscle.
Pause-for-the-cause Application
The main approach to be taken with the “Pause-Rest” application involves the trainee completing
a given number of reps with a selected resistance and then pausing (either self-maintained or by
virtue of the pins as support). The set then continues for as many reps as possible. Obviously all of
these advanced training applications are performed with perfect form for reasons of safety and for
purposes of accurate evaluation of shear muscle strength. The recommendation here is to commence
with 1-3 Pause-Rest sets to begin you excursion into this training regime. Added sets 3-6 sets can be
added later with experience-related increases.
True Pause-rest Application
The following two tables are meant to be read from first from left-to-right and then from top-tobottom;
specifically, in the case of the first set in table below, one would perform 1 rep, rest for 5
seconds, perform 1 more rep, rest for 5 seconds, perform 1 more rep and then rest for 60 seconds—
the 60 second rest marks the conclusion of the first set.


Modified Pause-rest Application

The first thing that is necessary to explain here is that this modified Pause-Rest training application
is not to be confused with the Extended-Reps training application although it is easy to see why
I am concerned about this problematic that is the hallmark of the advanced training applications in
general; they all intersperse with regards to their ultimate training influences as well as their applications.
Obviously, by adding a pause and then a continuation the application here remains under the
domain of the pause –rest training; albeit modified from the Classic Pause-Rest training application.
Just as obvious however is the fact that the short pause and then continuation of the set suggests an
Extended Sets application is at work here.
You will see in the explanation of the Extended Sets advanced training application that the true
configuration of the extended-sets model would see a difference in angle and a continuation (extension)
of the first exercise that was performed with another exercise and then another exercise. This is
in contrast to adding (extending) extra reps to the existing set. In other words, the term Extended
Sets (thusly) means added sets without rest versus added reps to an existing set. Recall, the name of
the training application is Extended Sets Training, not Extended Reps training. In fact classic Extended
Sets training does not provide for a rep-count change as the approach taken is (Singles Only!)
Only our modified Extended Reps training model provides for rep-count alteration.
One to three Pause-Rest Set applications can be applied in effort to maintain focus in the muscle
and to avoid incorporating added joint-capsule and ligament and tendon duress during the application
of the movements. You will note the descending nature of the program. Incorporation of the
fatigue-factor dictates the reduced rep-count and the extended duration of the pause implemented
into this approach to the Pause-Rest training application The weight will remain consistent as this is
not to be confused (in any way) with a decline pyramid or straight “down-the-rack” training applications.
Once again to review; the following will happen; the reps per set will be reduced, the pause
time will be extended, and the subsequent (after-pause reps will be reduced as well). Note; some exercises
are, by design, more dangerous than others and an understanding of the risks involved is imperative
for the safe, efficient applications of this advanced training technique.
You can follow this mass-mover exercise up with a complimentary (or supporting) Isolation exercise.
An example here would be the supine (flat) dumbbell press exercise. However, you will want
to be careful here because of the balance considerations related to free-weight dumbbell training. I
would wait until you become versed in the Pause-Rest format of training before going overboard.
Obviously, there are a myriad of possibilities with all of the advanced training applications but
the basic premise associated with the necessary “give-and-take” proposition associated with weightresistance
training allows for a continuum basis to be put into effect. Have fun ands experiment with
them and add them to your own training repertoire; do not just simply follow my number.
Three-peat Advanced Training Routine
The idea behind the concept of the Three-Peat advanced training application is to bring into focus
the considerations surrounding the involvement of the stabilizer muscles. The incorporation of
the stabilizers into our thinking stems from a reduction-of-injury perspective. To explain; stabilizer
strength increases could be instrumental in reducing injury risk when training heavy. This made possible
because stabilizer-emphasis training allows for strength gaining potential to be realized by focusing
away from the joint and connective tissue and by hitting the mid-point of the muscle more succinctly.
The baseline operative of the Three-Peat training concept is to provide for stabilization emphasis
in the first of the three exercises that will be performed. The next exercise will be one that sees a reduction
in stabilizer activation and the third exercise in the de-emphasis of stabilization involvement
will see a virtual non-existent stabilizer involvement.
Classic Three-peat Training: Specific Application


The difference between the Classic Three-Peat training application and the Modified Three-Peat
training application models is seen from a number of variables. The first is to provide for a twomode
as well as three-angle approach to the schematic. As well, the sets are comprised of descending
rep-counts in order to accommodate the Give-and-Take concept that has been established. A small
concession goes a long way in securing the deal (re; safe, efficient training). Again, it would be a good
idea for you to secure a solid foundation of understanding of the concepts to consider the Classic
Versions of the Advanced Training applications (as are most-often presented) and then incorporate a
few modifications into the mix in effort to expand your knowledge.
Triple-double Training
In basketball if a player scores in double figures for points, rebounds and assists he, or she is said
to have completed the Triple-double; always a mark of an intense effort on the court. In borrowing
the concept and applying it to a weight-training model, we would establish a 5-10-20 reps schematic
in effort to get an added measure of intensity on the training floor. The way the 5-10-20 reps schematic
is set up is to provide for a three-pronged attack on the muscle. To explain; the 5-rep set is
done with a heavy (mass-mover exercise in effort to seek maximum strength-gaining potential. The
reps are now doubled with the second exercise which is an Isolation movement in effort to work the
stabilizer muscles and to increase size in the muscle which is best achieved through a 10-reps application.
The third exercise chosen is one from the peaker category and chosen in effort to provide for
muscle stamina with a high-reps-set application.
To review; the exercise schematic sees three exercise selected with a particular reference for
muscle activation and subsequent training effect in mind. Mass-mover, for 5 reps. Isolator for 10
reps and peaker for 20 reps. The program calls for three sets of each of these exercises and not to be
applied as a triple set but rather with a rest period between each of the sets. When the three exercises
have been completed (1 cycle) another cycle can be performed and then a third. Note that to begin
attempt 1-2 sets and then incorporate a third set the fourth time this training application is performed.
The program would look like this: In addition it might be wise to consider utilizing a descending
reps count application for all follow-up sets (particularly with reference made to the isolator
and peaker exercises.

The Triple-Double Advanced Training application can be set up for all body parts. Your challenge
now is to develop a program portfolio that will encourage you to apply this training approach
in manner of mixing it up! Obviously many possibilities exist with regards to exercise selection. Have
fun and enjoy the benefits as well. Remember, as is the case with all of the advanced training applications
they are most effective if they are utilized for a short (three weeks maximum) duration. Note; if
the triple-double is difficult to achieve you can drop the third set down to allow for a rep-schematic
that would be called (I suppose) a Triple-Single in that you escalate the rep count up from 5-10-15.
Like I was saying; many possibilities exist. It does not have to be carved in stone; everyone reacts a
little bit differently to imposed demands.
Helpful Hint: Do not attempt to train the entire body with the 5-10-20 routine. You should select
either the upper or lower body or one exercise for each of the upper and lower body workouts if
you are on a full-body regimen. If you are doing a split routine select one –two exercises from the
exercise inventory for the day to apply the 5-10-20 routine.
The 21 Club
Interestingly whenever I have ever heard a reference to 21s it was always (and I do mean always)
with regard to biceps training; and it was always with direct reference to the barbell curl exercise. I
often wondered why that was so. I am still puzzled by the fact that 21-training has been historically
established as the private domain of the biceps. If the premise is founded upon the foundation of
increasing intensity in the muscle, then the question that immediately arises is what is so unique
about the biceps. I would think we would expect the advantages of the 21 application to carry acrossthe-
board to all of the muscles of the body. The suggestion contained in this report is that the 21
Club should be opened up to a wider membership base than just the carrying-card members of the
Biceps 21-Club. In this report, a 21 training program offering will be provided for each of the muscles
of the body.
The concept behind the 21-training application is founded upon the objective to provide additional
intensity into the muscle by blasting the muscle past the point of the normally considered saturation,
(or fatigue) point. The specific application of the 21 training differs from that of merely applying
extra reps to a set. The 21 concept brings into focus the idea of training the muscle from specific
reference (contraction) points. To explain; Let us begin with the established barbell curl and work
our way forward from there. The 21 training application is considered to have a three-position
framework of reference. These include; 1, fully-extended (stretch) eccentric contraction finishposition
accentuation. 2, fully contracted concentric contraction finish-position accentuation. 3 A
complete bombing of the biceps through the entire movement range from the fully-extended
(stretch) eccentric-contraction finish-position to the fully-contracted concentric-contraction finishposition.
Each phase of the movement is performed for seven repetitions each. For the record while I can
certainly attest to the increased intensity factor attributed to the 21 concept I (strongly) disagree with
the recommendation for seven repetitions to be performed! The carved-in-stone 7-rep three-phase
package appears out of the Stonehenge age or at least it represents concrete-level (cement head)
thinking. The seven-reps dictate creates a double-edged sword in that the amount of weight to be
employed would have to be too light to be effective in the early going; Stage 1 (most predominantly)
as well as Stage 2 (secondarily). Thus two-thirds of the premise of the exercise has now been misspent.
The second problem exists with the fact that a third series of seven reps that is to be completed
through a full ROM application will prove (from almost to absolutely) impossible to perform! The
result is a cheating, sloppy movement application throughout the entire concentric and eccentric contraction
phases of the movement. What results, is a lessening of intensity rather than the desired increasing
of intensity.
The problem with the 7-reps application is that both physically, and psychologically, the trainee
is programmed for failure. The individual is focused on finishing the trilogy of stages and is in a rush.
In addition the muscles begin to suffer from lactic-acid overload. The result is poor mind-muscle
connection and resulting sloppy movement applications. In fact, the biceps rarely contract to any
degree. They are left virtually dormant as a result of quickly applied movements with a cradling effect
applied that sees the biceps protected from being over-worked or even worked at all! Once again, the
give-and-take syndrome must be applied here. If you are going to go for added intensity you really
need to know where to draw the line or the muscles will do it for you by shutting down –if not off! If
this is allowed to occur then the reasoning behind the premise is therefore shattered. Let us take a
good idea and modify it. The simple modification in mind is to reduce the rep-count for each phase
to 5 or perhaps even 4 reps following an increased experience level in manner of providing for added
resistance to be employed.
Curls-21 Traditional Application
Phase 1
The trainee begins the barbell curl exercise from the normally defined Starting Point. The bar is
brought upward (elbow-joint flexion) to the half-way point of the full ROM (90 degrees with the
lower arms held in a position that is parallel to the floor. The bar is then lowered (elbow-joint extension)
to the fully-extended finish position. This is to provide for stretch-position accentuation; as
such the emphasis here is on the eccentric contraction phase of the movement. This movement application
is done for a repeat of 7 reps.
Phase 2
The trainee contracts the bar to the 90 degrees Parallel-to-the-floor position and then concentrically
contracts (elbow-joint flexion) the bar to the fully-contracted concentric contraction finishposition.
The weight should be maintained at the Peak Position for a count of 1-2 seconds. It rarely
is of course, even with normally applied curls- let alone in the curl 21 exercise. The weight is then
lowered to the Stage 2 commencement point (90 degress) from the floor. The movement is repeated
7 times.
Phase 3
At the completion of the 7th rep (concentric contraction phase) the trainee then lowers the barbell
all the way down to the fully-extended (stretch) eccentric contraction finish-position. From this
point the bar is raised (elbow-joint flexion) to the fully-contracted concentric contraction finish position.
The contraction should be held for a 1-2 second count and then the bar lowered (elbow-joint
extension). This procedure is followed for seven repetitions. This entire three stage application is
considered 1 set of curl 21. With experience subsequent sets 2-3 can be added. More than three sets
would not be generally recommended.
Curls-21 Modified Application
With the Curl-21 (Modified) application two adjustments are made: 1, the previously-alluded-to
rep-count reduction schema. (4-5 reps) 2, A modification is made to the ROM of the movement application
in both Phase 1 and Phase 2. To explain; In the Classic or Standard Curl-21 exercise application,
Phase 1 will see the trainee first bringing the weight up to the 90o (parallel-to-the-floor)
finish-position and then lowering of the weight to the starting position. In Phase 2 of the Curl-21
exercise the trainee will first raise the bar from the parallel (90o) position to the top of the fullycontracted
concentric-contraction finish position. The bar is then lowered to the parallel-position
(90o) before it is raised again. In other words, the trainee is always working within the Sticking-Point
of the ROM. Beginning and ending at the precise starting point reduces the amount of intensity that
can truly be brought into the exercise.
Importance of Going Through the Sticking-point
In Phase 1 of the modified version of the Curl-21 exercise the trainee is instructed to concentrically-
contract the weight up to and through the Sticking-Point by a few degrees (approximately 5-8
degrees). Likewise in Phase 2 of the Curl-21 exercise, the trainee is instructed to eccentricallycontract
(lower) the weight down and through the 90 degree (Reverse) Sticking-Point position.
Again, the extended range would be between 5-8 degrees. Any more than this would virtually simulate
the normal (albeit somewhat shortened) movement application. Extending the movement application
through a greater (albeit small) range will incorporate additional fibers into the movement thus
providing for significant increased taxation upon the muscle. After all, this is what the concept of the
Curl-21 exercise is all about. Another interesting discovery attributed to the extended ROM Curl-21
movement application is that not only will the muscles be encouraged to work more but there will a
lessening of the duress placed on the connective tissue (particularly in that nagging attachment point
in the region of the lower biceps and the top of the forearms (radial-ulna joint) which is highly vulnerable
to aggravation.
Inflammation of the joint is commonplace with the curling exercises under normal training applications.
With reference made to the Curl-21 exercise, it is greatly escalated. There are also considerations
for increased fiber activity during the performance of Phase-2. To explain; in completing the
concentric contraction; along with the subsequent initiation of the eccentric contraction (in Phase-2)
the shoulders are brought into play. It is important to keep the wrists in the hyper-extended position
and to relax the shoulders in manner of providing for maximal contraction of the biceps. Normally,
with the Curl-21 application at the tope of Phase 2 (in both the concentric and eccentric contraction
phases) the shoulders are called upon to perform the brunt of the exercise load. As well there is a
tendency to curl the wrists during the completion of the Phase-1 segment eccentric contraction portion
of the movement and during the initiation of the concentric contraction portion of the movement.
In phase 3 of the Curl-21 movement application, technique is essentially something you hear
someone scream about on TV. That is about as close as you will get to addressing the requirement of
proper movement methodology. In other words, the Curl-21 exercise is supposed to be a training ally
for the purposes of gaining intensity when in reality it is generally a study in futility in that regard.
Plethora of Exercises to Choose From
As touched-upon earlier there are many exercises that can be addressed with the 21 3-phase
movement application. The suggestion here is to use single-joint exercises as opposed to multi-joint
exercises which are better served with conventional or previously discussed specialty (advanced) exercise
applications. For example the cable-crossover exercise would be favoured over the bench
press. However this is not necessarily the case in all movement selection. For example the shoulder
press is favoured over the cable-crossover for accentuation of the 21 approach. The cable-crossover
can be effective but the conventional application provides sufficient squeezing (contracting) of the
pecs. Much of this is a matter of choice based on feel.
Note as well, the training mode (re; free-weight, cable-plate stack, variable –resistance machine
training can also be implemented. Bear in mind the specific relationship each has with reference to
direct versus indirect effort and resistance associations. Experiment with the various choices and
draw up a well-rounded 21-Club exercise routine that will have you burning! Remember, you will not
be able to do the entire routine with a 21 approach. Select one exercise per body part and complete
1-3 sets before going to another exercise for the same muscle group. Another approach is to simply
move on to another muscle group immediately following the 21 exercise applications. Your pain level
will dictate your course of action.
Suggested Exercise Portfolio for Remaining Muscle Groups
Note for general movement applications for the correct performance of the 21-club training approach.
Perform all exercises with a three-phase configuration. That is Phase 1 Just beyond the first
50% of the movement range. Phase 2 second 50% of the movement range, Phase 3, 100% of the
movement range. This is true for both concentric and eccentric contraction phases of the movement
(whether pulling or pushing). It should be acknowledged from the start that there is not merely one
exercise that can be done for each muscle group. There are several choices available and trainees
should be encouraged to experiment in establishing the most effective 21-Club portfolios for themselves.
The presented exercises are merely suggestions as a good place to start.
Triceps: Standing Triceps Extension
Contrary to the often-prescribed partial (half) range movement applications for the triceps pressdown
exercise, the movement should be performed with a full ROM of the muscle. No half-way
measures are to be taken here. The concept -as outlined with the barbell curl exercise- is repeated
here with a reverse movement accentuation. I will not go into major explanations of the movement
other than that as we really do need to cover this quickly or you will never have time to get into the
gym. I did want to make that important distinction however as it is crucial to the fundamental issue
of full ROM training advantages.
Shoulders: Smith-machine Shoulder Press
The Smith-machine shoulder press exercise is selected for balance purposes as extended –type
shoulder training applications are potentially dangerous. The Smitty provides a balance factor as as a
tracking lane that allows for stability in the 21 application. The mass-mover aspect is applied here in
preference over the lateral raises or cable side lateral raise exercise because the Raises Group can exert
subtle duress on the ligaments and tendons of the shoulder.
Back: Front Pulldowns
The front pulldown is preferred here over the controversial rear lat pulldown exercise for safety
purposes (although we do allow for the conventionally-applied rear pulldown exercise to be included
in our exercise portfolio) as the stop-and-start aspect to 21 training can wreak havoc if concentration
is not at the fullest. Try this one and you will enjoy the deep burn and subsequent pump in an area
that most people find difficult to truly attack. This obviously can be done with a pronated-grip
(straight-bar) application. Again, the options are wide-spread as to grip and angle. The pronated-grip
application is suggested to provide for a strong incorporation of the latissimus dorsi into the movement.
The suggestions put forth in this thumbnail sketch are to provide a starting point of reference
to the introduction of the 21s training approach to muscle groups that may never have been taken
through it before.
Chest: Bench Press
The conventional (supine) bench press exercise is suggested as it provides for a stable base to
operate upon and allows for accentuation of the chest with an easily-facilitated range-of-motion consideration.
Also the three-joint support at the top of the lift and the safer flat (versus incline or decline
angles) provides added safety for the completion of the 21 advanced training application for the
chest. A smith machine or rack could be used as well. Later on, dumbbells could be the route-ofchoice
for your 21-Club chest training.
If you do choose to go with the cable-crossover exercise (despite my earlier-expressed concerns),
proceed with trepidation, as the shoulders could become exposed to undue stress. This is particularly
true at the top-end of the movement in both the concentric and eccentric phases where added exertion
is placed on the shoulders as well as the biceps tendon. Remember, the indirect relationship between
the effort and the resistance as characterized by cable training requires patience and full concentration
in order to effectively apply a consistent mind-muscle connection.
Quadriceps and Glutes: Lunge
The separation of the quadriceps and hamstrings region will be applied here as leg training 21s
can be potentially risky for the lower back (re; squat, leg press exercises). The knee-joint (or leg extension)
does not leave much room for the three-phase 21 application and as such will not be recommended.
Instead we have selected the lunge exercise. Now, we realize that the lunge movement
works the hamstrings and the gluteal muscles as well as the quads. However, the additional ROM
movement capability (increased with the utilization of an elevated platform) with which to apply the
21s (attributed to the lunge exercise over the thigh extension movement the lunge was selected. The
counter-balancing of the (slightly) reduced accentuation of the quadriceps with the full ROM benefit
of the lunge allows for a compensatory benefit that outweighsd the drawback. The ROM of the
lunge exercise allows for a readily-facilitated 3-phase 21-Club application. Balance will be a key aspect
here so make certain that you have something to hold onto (and that the area around you is clean) to
begin. Believe me; the 21-Club lunge application will leave your quads burning (see a specific application
below).
Hamstrings: Standing Leg-Curl
The standing knee-joint flexion exercise was selected over the lying leg curl (knee-joint flexion
exercise due to the risk factor associated with the lying leg curl exercise. The isolation concept of applying
a single-limb movement application versus a double-limb application is that there is less strain
imposed on the lower lumbar region of the back. With the focus on a three-phase training application,
there is a tendency to let the weight come down too quickly and a corresponding negative ramification
of jerking the weight upward too quickly without the benefit of proper neural impulse signalling.
The suggestion is to introduce the 21-Club leg training application with a single leg application.
It is performed with a more ideal angle-of-application component. The vertical posture does not
place the same stress upon the lower back as that experienced during the application of the doublelimbed
lying leg curl exercise. Of course the lying leg curl can be performed with a single-leg application
but despite that being the case the standing leg curl version is the recommended opening excursion
(see the specific application below).
Lunge: Specific Application
We have selected the lunge exercise for another reason as well. The movement application will
be altered so that the movement range will be taken from the working lever (leg) established at a 45o
angle from the upper body (or, one-half of the 180o true-vertical and the 90o parallel or horizontal
position of the upper leg. The sticking –point reference area to establish the partial range of the 21s
approach is pin-pointed at 50% angle between the extended leg position and the flexed 90o position.
The lunge will be conducted with a three-phase stage configuration; however, these phases will be
performed with a slight deviation from the norm. That is, the Phases will be conducted at the halfway
point in the generally applied movement range.
Phase 1
Begin the concentric contraction phase of the Phase 1 movement application by pressing with
the heels with a flat position of the foot on a staircase or secure raised platform. Press (push) upward
by concentrically contracting the drive-leg to a position that is just below above (5-8 degrees) the parallel
position of the knee. Lower slowly to the starting point; repeat for 6 reps.
Phase 2
Begin the concentric contraction phase of the Phase 2 portion of the movement by commencing
with the leg extended so that the knee is positioned just below (508 degrees) beyond the parallel (horizontal)
point. Press upward until the leg is in the fully-extended concentric contraction phase of the
movement.
Phase 3
Lower the body down by flexing at the knee so that the upper leg is just past the parallel position
with the floor and drive up through the entire range of motion to the fully-contracted concentric
contraction finish-position. .
Standing Leg Curl: Specific Application
The 21-Club standing leg curl exercise is performed with the following procedural guidelines;
Phase 1
Begin the concentric contraction from the extended (bottom position) and conclude with a leg
contracted just past the parallel position of the knee-joint.
Phase 2
Begin the concentric contraction with the leg positioned just below the parallel-to-the-knee position
and conclude the concentric contraction with the heel brought up to the glutes.
Phase 3
Begin at the fully-contracted concentric finish-position and lower the leg all the way down to the
fully-contracted (stretched) eccentric-contraction position.
As per the doctrines related to 21s training, repeat for 5 reps in each (phase) to complete the set.
Note; you will want to initiate slowly into this 21-Club movement by completing only one set for the
first few attempts. This is due to the fact that the hamstring muscle group tightens up quickly.
Strains, pulls, and tears of the region can occur easily and as such caution is required with this exercise.
Light weight, slow-speed-of-contraction movement applications are necessary with this one.
X-Reps (Extended-time Reps)
We have looked at several ways to increase the intensity of the workout. In this section we have
focused on the concept behind the generally-domained Forced Reps principle of training. Whether
through adding reps to the set with the help of a spotter or through the assistance of the Smith machine,
or the utilization of Rack-training, the idea behind forcing (face it, torturing) the muscle, into
new levels of fiber recruitment establishes the baseline of muscle hypertrophy. Additional measures
for increasing intensity have also been examined including the highly-heralded Negative Accentuation
training (negatives). Naturally, all of these approaches are implemented to meet the main goal
associated with blasting the heck out of our muscles; to gain size! Strength and definition are great as
well in obtaining the elusive superior physique. There are a plethora of schema that can lead to increased
intensity but there is one brilliant discovery that simply has not been met with widespread
awareness (rest aside acceptance). What lies in front of us is the most-overlooked training application
on the board; Static-Contraction.
Static-cling
You have heard of Static Cling, well Static-Contraction might be considered Static-Hold; as in
holding the rep. To explain; the term X-Reps represents another example of the semantics-related
problems associated with weight training. While X-Reps might suggest to you that X= extra thus
suggesting that X-Reps training means extra repetitions. This is not the case. X-reps refers to extending
the rep (as in holding the rep for an extended period of time). This approach to increasing the
intensity within the muscle is an interesting one from a scientific standpoint and a puzzling one from
a psychological perspective. The muscle response to extended-contraction time (with no movement)
is remarkable when compared to normally-applied (full ROM) movement applications. Studies (too
long to get into at length here) have showed that the hypertrophy of the muscles of the trainees using
static-contraction training was significantly more pronounced than that which was shown by the
study group that used traditional training methods! If you are like me you will say Madness in response
to the suggestion that a single-position training application would be more effective than
conventional training applications. Note; it is not known if continued static-hold training would conAdvanced
tinue to provide superior results to conventional training approaches, but it does give reason to consider
adding this new colour to your paint box.
Amazing (and Puzzling) Results
To illustrate the difference in Static-Contraction and conventional (full ROM training) one study
will be referenced; as presented by; (Holman S., Size-Surge 2, Peter Sisco & John Little (Static –
Contraction Training); 41 subjects following a 10-week bench press testing regime showed marked
strength increases (51.3% static-position strength) and 27.6% full ROM strength) using the Static-
Contraction training method. The results showed an amazing (virtual) 30% increase in strength in the
full range-movement applications following a 10-week program! The so-deemed amazing aspect to
this accomplishment is that no full range movement applications were implemented at any time during
the 10 weeks. Now that we have your attention let us examine the actual method behind the Static-
Contraction training madness.
Static-contraction Training: Specific Application
Unlike conventional training methods that feature a number of sets of a number of –full ROMreps,
the Static-Contraction training approach sees the trainee performing sets consisting of one repetition.
The difference is that 1-rep is held in position (fully-contracted concentric contraction
finish-position) an extended 15-20 up to approximately 30 seconds. These figures are established to
gain the most out of the concept of holding the position and avoiding injury risk from aiming too
high with respect to the Time- Under-Tension (TUT) consideration.
Approaches for Evaluation
In order to allow for the Static-Contraction training method to be effective it must be applied
with a succinct measuring system. All of the other advanced training approaches have to their credit a
framework of reference with respect to result evaluation. The Forced-Reps principle as applied by
virtue of spotter-assisted training may have more variance attached to it by nature. This seen because
of the unknown commodity aspect of just how much assistance was offered on a given day or given
set or even a given repetition by the spotter. Variables in the strength of the trainee on any given day
come into question as well but that is an attached rider of all training applications.
Phase 1
Establish the resistance that can be held in the fully-contracted finish position for 15 seconds.
The resistance selected will be based on known training levels based on experience. What can be held
for a given period of time (in this case 15 seconds) may not be precisely known. However, working
with the unknown variables in order to establish a framework of reference is a built-in proposition
for all of the advanced training applications. Return, (re-rack) the weight. Wait 1-2 minutes (wide
range here in manner of determining the strength and recovery capability of the muscle under this
new taxation.
Phase 2
Perform a second 1-rep set. Hold the contraction for another 15 second time limit. Wait 15
seconds longer than the first rest period and try to hold for another 15 second rep.
Phase 3
Repeat a 15 second Static-hold rep. This completes the first workout. Other exercises can be
brought in for the entire workout whatever regime is being applied.
The second workout using Static-Contraction the aim will now be to increase the contraction
time of the extended rep. using the same resistance as previous workout the extended time frame of
the rep should be anywhere from 1-3 seconds. Small increment increases in intensity is the hallmark
of all successful training methods and it is no different with Static-Contraction training. Avoid being
greedy and celebrate ANY increase in contraction time as a significant training effect. Mind you, it is
important to always aim at establishing a new plateau (extended contraction time) The next workout
you will maintain the Static-Contraction time to 2-3 seconds more (for one, or perhaps all of the
sets). In other words you will scaffold the training intensity. This approach will be used to extend the
time for the rep to 30 seconds. At which point, the resistance will be increased and the time of the
Static-contraction will be reduced back down to a starting point of 15-20 seconds (depending on how
the muscles respond to each of the potential starting points). The other variable in the program is to
see if you can add weight extend the holding pattern AND reduce the rest period between the 1-rep
sets! The suggestion here is to treat this advanced strength training application like all of the rest of
them; that is, utilize the get-in-get-out concept. This will allow you to avoid the adaptation saturationpoint
and the onset of staleness and subsequent over-training syndrome.
Note; we have outlined the static-hold position to be that of the fully-contracted concentric contraction
finish position. The static-hold can be applied at various points in the movement range for
variety. However, with that said I would utilize static-contraction at the (just before the absolute
finish-position of the eccentric contraction phase of the movement).
Ballistic Training
We have saved the best for last with our review of the advanced training applications with the
inclusion of so-called Ballistic Training. When we say saving the best for last it might very well just
mean that putting ballistic training ahead of anything else would be an error in judgement. It is crucial
that the trainee be well-versed in the rudiments of weight-resistance training applications before even
considering tempting ballistic applications. In other words; rookies need not apply! Ballistic training
should be reserved for not only experienced weight-training athletes, but for those unique individuals
who possess balance, and coordination fused together with an intricate timing mechanism that provides
for succinct movement applications. The concept behind ballistic training is to promote accelerated
strength for powerful explosive movement applications. Many of the exercises that are performed
with a ballistic approach are potentially highly-rewarding for increasing power. These same
ballistically-performed exercises can be extremely risky.
A brief overview of the concept of ballistic training (as it relates to powerlifting and weightlifting)
will be presented to open this section. A detailed analysis will not be provided as the ballistic-type
training (as applied to powerlifting and weightlifting) is a related form of ballistics but it is not what is
considered true ballistic training. To explain; almost everyone in the gym uses the concept of ballistics
when training. The use of downward force (gravity) adds momentum (as impetus to the subsequent
lifting phase of the exercise is widespread for all exercises. (This point is covered in detail in
the chapter devoted to the Differences in Eccentric and Concentric Contraction of this text). The
weight is (in essence) allowed to free-fall just before the conclusion of the eccentric contraction. In
this way the movement application is considered Ballistic. True Ballistic application is found in the
concept of projecting an object through space with force. The object being projected during weight
training applications (as witnessed in the eccentric contraction phase an exercise) is the body. The
weight itself is not being projected on its own. What this means is that true ballistic weight training
applications include the projecting of the weight into free space. The body can be allowed to free-fall
at the bottom of a movement (squats) in a ballistic-type application designed to increase power. The
body can also be projected into space (the weight at no time leaves the hands) during the application
of the jump-squat exercise for an explosion-type effect at the conclusion of the concentric contraction.
Again this is considered a Ballistic type of movement application but it is distinguished from
(True) Ballistic Training that sees the resistance leaving the possession of the trainee; (examples provided
below). The focus on this report then is to outline the considerations related to ballistic training
as it relates to the specific Advanced Training Application known as Ballistic Training which will
be offered following the initially-presented considerations under the umbrella term Explosive Training.
Many Divisions and many Applications for Ballistic Training
Ballistic training can mean a number of different things to different people. For example, One
athlete might see ballistic training to mean throwing the bar up and then catching it during the bench
press exercise (Smith machine here only please!); while another individual might approach ballistic
weight-training from a position that sees jump squats thrown into the program. Still other weight
training enthusiasts will regard ballistic training form a Powerlifting perspective. Examples here
would include the explosive lifts such as the Snatch and the Clean and Jerk exercises. The first involves
explosive coordinated synergy of effort on the raising of the bar from the floor to the overhead
(straight-arm –lockout- posture of the arms. The second involves a powerful pull of the bar
from the floor up into the completion of the first phase of the exercise (the clean) into a transition of
body adjustment and then the second phase of the exercise, the powerful thrusting (pressing) of the
bar overhead into the full lockout-position of the arms. The coordination of the upper trunk and the
legs is crucial in these lifts if they are to be successful and if the athlete is going to be able to avoid
injury.
Means-to-an-end versus End-in-itself
Ballistic training has a purpose in the weight-training game. This said true of those who are involved
in weight training as an end itself, such as that which is experienced by those who attempt to
get stronger with weights so that they will be able to lift heavier weights; simple logic to be sure. It is
also true that ballistic weight training holds a place of distinction as a major ally in preparing athletes
who use weight training as a means-to-an-end to improve their performances in their chosen sports.
Ballistic strength can be readily applied to virtually any and all sports. It should be acknowledged that
despite the appearance of simply being a matter of involvement of brawn in performing explosive
(complicated) movements there is much more to it than meets the eye. Explosive, Ballistic training
requires intricate synergy of mind and body and succinctly integrated body-part segment coordination.
In fact, there is so much that is taken for granted (and as a result so much is overlooked) in the
performance of power lifting movements that several books on the subject have been written.
Appreciation of Refinement of Movement Methodology
Much has changed from the days of simply grabbing the bar off the floor and firing it overhead
as best one could, to today where top-rated lifters apply highly-integrated technical application to
their movements. One such book by Harvey (2006), entitled Explosive Lifting for Sports, suggests
that weight-lifting exercising featuring explosive movement applications is more involved that what is
generally thought to be. He says; some detractors of weight-lifting say that top performance in the
sport is all about technique. This is simply not true; says Newton. Many technique differences as well
as mistakes occur even at the highest level of competition. The time to learn the intricacies of the
weight-lifting movements is in the early teens. Older athletes who have developed strength and power
have a very difficult time mastering the techniques of weight lifting. This statement says a lot about
the subtle nuances of what appears to be a brawn (not brain) proposition.
The involvement of high-level brain activity is required and as such there is a need to develop a
neural pathway (blueprint) in order to be able to train effectively and safely. This is precisely the reason
that the ballistic training method is reserved for EPOs (experienced players only). A word of caution
here however; often the length of time someone has done something has little or no bearing on
how well they will perform it. Some trainees just never get the hang of it (so-to speak) and as such
should refrain from the high risk associated with dangerous moves being applied with even more
dangerous practices! Neural application may not be there for some individuals as ballistic typetraining
depends on an intricate wiring mechanism of the person.
Important to Study Sound Scientific Perspective of Experts
When teaching the more demanding weightlifting and powerlifting movements it is necessary to
gain a deep understanding of the fundamental differences in the requirement associated with the
learning of the technique base for each exercise. We shall not go into the actual lessons but we will
offer one more quote from author Newton; Regardless of the approach taken to teaching the Snatch
and Clean and Jerk, (Whole Method, Part Method, or Whole-Part Method) all attempts to learn these
exercises should first be done with the use of a broom-stick. A beginner does no need the distraction
of an actual barbell while learning. This says two things about the involved techniques of ballistic
training; 1, it is more difficult than it looks, 2, it can be very dangerous. We will leave the weightlifting
and powerlifting area of consideration for ballistic training with the suggestion that before attempting
any exercises requiring ballistic movement applications it will first be necessary to learn the basic
weight training requirements. It takes a great deal of practice to transfer the different speed-ofmovement
requirements from standard (slow) movement applications of basic weight training to the
fast movement applications of explosive weight training.
Considerations for the recognized weightlifting exercises (Snatch, Clean and Jerk) and those exercises
deemed the official lifts of the powerlifting competitions (Squat, Bench Press, Deadlift) require
a unique attention-to-detail that is far too in-depth to outline here. We will not even be able to
offer a list of the derivative exercises of these recognized lifts (re; Jump-squats, Squat-cleans, Splitjerk,
to name only three in a long list). These exercises are best left for books that are devoted to the
explanations and technical illustrations related to proper movement methodology. You have heard of
the A-little-knowledge-is-a-dangerous-thing ideology and to offer an aborted (thumbnail sketch) of
the demanding lifts associated with weightlifting and powerlifting would be irresponsible on my part.
(You will be able to refer to the earlier-presented explanation of the relationship of terms relating to
the world of strength and power training outline). The suggestion here is to obtain the previouslyreferenced
outstanding text by Newton (2006) devoted to explosive training that offers a detailed
explanation and superlative action-sequenced photo illustrations.
A Cornerstone Summarization Presented by Explosive-training Expert
It is crucial to acknowledge the requirements of neural adaptation change. The muscles have to
be instructed to perform the movements correctly and the body has to adapt to the special coordination
that is required for these movements. Neural activity and coordination can only be developed by
repeating the exercise many times using proper form technique. Coordination not only makes it a
more efficient task allowing you to lift more, but it also conserves energy required for additional
training. The period of neural changes is also the time you are developing proper lifting techniques,
increasing your lifting ability, and decreasing the possibility of injury. (Groves, 2000)
How is it applied?
Ballistic training is seen as the most explosive form of training that provides a stress factor on
the muscles that is far different than any other approach. Of course with that said, there is always a
transfer factor (benefit) that sees one training application (as it relates to the ultimate goal) leading to
the success of another. Ballistic training then , would be seen a s providing a directly-related training
ground for the ultimate explosion requiring force for enhanced capability in the areas of powerlifting.
Moving a load is a measurement of strength, moving that same load through a distance (muscle
ROM) at a faster rate provides a measurement of the power capability of the athlete. Power and
strength are considered inter-related in that when one is developed it can lead to the development of
the other. However, even with that being the case, (no argument here as to the logic found in that
premise) there is still the matter of training specificity to address. In other words, if you are seeking
to increase power specific training applications need to be applied in order to accentuate the specific
training effect being sought. The concept of specificity is true across-the-board but it is especially
true when consideration is given to powerlifting. The referred-to specificity relates not only to fiber
recruitment but perhaps even more pronouncedly with respect to the neural adaptation response to
weight-resistance training (in general) and with regards to explosive training in particular.
Acceleration
The major impetus of ballistic training is to provide a neural package that allows for highintensity
motor-unit firing required in explosive training. In utilizing ballistic movements and the accompanying
neural responses, athletes can increase their performance at all levels and in all areas of
athletics. The neural application does not just allow for the movement but it provides for the succinct
timing mechanism of the thought processing that lead to smooth zone- to- zone transition of
power within the ROM of the muscle and within body segment transition leading to highlycoordinated
movement applications. It is the wiring that separates those that should utilize ballistic
training in their training programs and those that should not. Asking the body to accelerate a weight
through space when the coordination is simply not there is asking for the impossible with reference
made to safe, efficient training. The fundamental concept associated with ballistic training is called
acceleration. The ability to accelerate (and to maintain acceleration as long as possible and to then
subsequently hold the arrived-at peak performance level is a matter of well-rounded skill. Working on
acceleration then is seen as a valuable weapon for any athlete to have; especially a strength-power
athlete. It has been determined that one the most effective way to work on acceleration is to work
with accelerated-oriented training applications. (See training specificity, above). The most effective
training application specifically-related to acceleration is deemed to be Ballistic training.
Turning the Tables: Reversing the Gravitational Field
During the performance of the concentric contraction during a free-weight movement (when directly
opposing gravity; as opposed to the indirect opposition to gravity as seen with a pushing
downward movement as when working on a cable-plate-stack machine) gravity exerts opposing force
to the movement. We combat this force with a force that is greater than gravity (one of the Laws of
Newton) in effort to move the load. Let us use the Bench Press exercise for our analysis. In manner
of moving the load we must accelerate the weight through the force opposing the movement. However,
once through the initial phase (approximately one third) of the movement gravity plays a
stronger role in phases two and three (last two-thirds of the movement). Obviously, if this phenomenon
did not occur the weight would be projected to infinity. (Detractors to the concept of infinity
please get in line). If gravity did not provide for this deceleration of the weight we would either be
taken with it or we simply would not be able to hold on to it. By utilizing the concept of ballistic
training, the trainee can provide for a longer acceleration phase of the movement. In fact, the entire
movement could be considered an acceleration phase as the neural input is such so as to allow for an
acceleration of the weight through the ROM of the muscle. You might even add to the point of extended
acceleration with the suggestion that the provision of acceleration extends even beyond the
entire ROM of the movement.
Extending the Acceleration Point
This is made possible through the phenomenon of neural impulse activity being able to extend
the transference of energy to such a degree as to extend the energy field beyond the normallyconceived
limitations. To explain; Let us examine the globally applied rudiments of the Bench Press
Exercise (Caution! Smith-Machine only here please). When the bar is accelerated upward and
through the sticking-point and then all the way through the ROM, (with the idea in mind) to release
the bar from the grip (project the resistance into space) the neural input is different in that the thinking
is now not to slow-down, but to speed-up! As the resistance is raised to the fully-extended finishposition
of the concentric contraction phase of the movement (lift) the resistance is blasted upward
and released with an explosive thrusting action. With this thrusting application, the resistance is projected
into the air with great acceleration. In this way, the acceleration of the movement is extended
not only through the entire range of motion of the lift but even to a point that is beyond the ROM!
Once the bar leaves the hands gravitational force comes strongly into play but only after the bar has
been extended beyond the ROM. If we think about this for a minute or two, the realization that
something different is happening here will manifest itself. What is different is pretty drastic, and even
more so with respect to the neural adaptation that is taking place. What (essentially) takes place with
the Ballistic Training application is that there is an applied extension of the normally-thought-of acceleration
zone.
Extending the Energy Force Exemplified with Martial Arts
This concept of extending the energy field-of-force is seen with the martial arts component of
striking through an opponent rather that striking at an opponent. In other words, the strike force is
extending past the strike target. The strike is not directed to and stopped at the intended target but
rather it is delivered with the thought processing that sees a visualized target beyond the point of the
actual target. This allows for the blow to be delivered with greater force because the striker is not
thinking with a limitation put on the slowing down (virtually subconsciously) at the strike target. By
focussing beyond the target the blow is administered with far greater velocity and accompanying
force as the acceleration of the movement is extended beyond the considered normal movement
range but the normally considered neurally-involved range of thought as well.
Staying with the martial arts and the premise of extending the energy force we can look at the
exercise of multiple-resistive target breaking (boards, cement blocks) In this circumstance the energy
field is extended through a conducting system. The blow is delivered with a factor of momentum
(mass x velocity) at the center-point. The thinking is that a target removed from the immediate striking
zone will be broken as an indirect reaction to the delivered force. Indirect, in this case means that
the blow was delivered to the first block and the energy was driven right through the first block and
then into the second and then third and so on through the stack. Many people explain this as one
block being used to brak the other one as in the Domino Effect. This is not accurately assessed, as it
is not merely the action of one breaking block breaking another it is the energy force that travels
through one block and then the other that provides for the power to break through the stack. The
blow is delivered with a specific 3enrgy level application one that comes from experience and the
confidence that has been built up over time. No one starts with 15 blocks of cement and blasts hisher
way through it. The concept of neural adaptation plays a key role in being able to provide for
such a phenomenon to occur.
Extended Acceleration and Transference of Energy
This difference in the thought process represents a complete reversal of form (methodology that
is initiated by neural factors that have encompassed the rudimentary differences in the two approaches.
By adjusting the gears in the mechanism, the neural adaptation to the task at hand allows for a
different accentuation to be placed on the movement application. The demand is different and therefore
the task requirement involves adjusted thinking (impulsing). This neural adaptation and subsequent
response of the muscle fibers (as well as the coordinated effort of the components of the
body involved in the movement) allows for a specific training effect. For instance, the involved
muscles, principally the chest, but obviously with the assistance of the muscles of the shoulders, as
well as the triceps; along with the stabilization factor of the body against the bench during the acceleration
of the resistance requires a different mind-set. This mind set-set establishes the re-wiring or
what might be thought of as Extended-Wiring of the system to include all of the encompassing features
related to ballistic movement applications.
Fundamental Pattern Hold Consistent
The effects experienced with Ballistic Training are repeated from the associated premise of velocity
associated with the acceleration training examples outlined in the references to martial arts
training. There is a great increase in power development with Ballistic Training. However, recall,
training specificity dictates training effect. There is a double-edged sword connected to this basic
principle. This suggests that there is (remember) good-news bad news component at work in all
training applications. The good news is that a particular training approach that accentuates a component
of the overall training goal can be an effective ally in the effort to improve that component. On
the dark side of the moon however is the fact that the same scientific premise carries with it the dictate
that if you focus solely on one aspect of training (in this case acceleration, in effort to increase
velocity, in manner to achieve ultimate power will work against that objective if the other components
of the objective are abandoned.
It is important then to apply all portions of the equation at all times (if, albeit certain components
are emphasized over another for a pre-determined schedule of events). In other words, if acceleration
is approached with a 100% applied schedule without the considerations for strength training
(with resistance-accentuated training) then it would acceleration emphasis only would obviously
prove to be counter productive to the proposed strength-gain objective. If you constantly approach
resistance training with little or no, regard to the amount of resistance but only from a perspective
that speaks to the notion of moving said resistance as quickly as possible, associated strength component
of power cannot possibly be realized. One-dimensional training approaches are never as effective
as multiple applications (even within the same sports discipline) whether the goal be strength,
power or speed or agility, balance, and quickness for cross-training considerations for athletes from a
variety of sports. Once again, the concept of assessing the whether a training application is better or
worse than something else, must be evaluated from a position of global-good and not from a singular
view. This offers one explanation of why nothing works forever and that there is a need for a built-in
crystal ball to know precisely when to get in and when to get out of a particular training approach.
This comes with experience of course. However, the concept of regularly-scheduled preprogrammed
scaffolding applications can be utilized to optimal advantage.
We have seen this with the Eric Broser training models (as outlined earlier) and the Now-famous
West Side Barbell Training models to be analyzed later in this report.
Ballistic Training and Fast Twitch Fibers
It has been suggested that Ballistic Training elicits more fast-twitch fiber recruitment. Following
the pattern of what we know about fast-twitch fibers we can conclude that any incorporation of increased
emphasis upon the fast-twitch fibers is that an ensuing increase in strength would be the expectant
result. The recruitment of the fast-twitch fibers comes about as a result of the speed of contraction
factor that comes into play under the Ballistic Training approach. The muscles must react
quickly to the forces imposed upon them and as a result they develop more force. This is important
in Ballistic Training where the muscles must contract swiftly in order to produce extreme force in a
very limited period of time. Transferring this benefit over to the Heavy Lifts such as working with
maximum resistance during the Bench Press, Deadlift, and Squat exercises it is easy to see that the
ballistic work can produce startling improvements in several areas. The increased frequency (faster)
and improved synchronization (close-firing) of the fast-twitch fibers as manifested during the Ballistic
Training applications will be of tremendous benefit under conditions of maximum-resistance
training.
We have made reference to the Smith-machine bench press exercise as an exercise of choice for
ballistic training in that it is safe. The columns provide a track for the resistance to run on. Imagine
the potential problems associated with a free-weight barbell ballistic bench press application;
hmm… Another exercise that receives a lot of play form Ballistic Training standpoint is the (Smithmachine)
Jump-Squat exercise. You can apply the same reasoning as above-mentioned for the Bench
Press exercise). Another reason the Smith-machine is recommended is for the smoothness of the
feeling involved with the counterbalancing that is available that allows for a fluid release of the
weight and then a recapturing of it.
To explain; When the weight is thrown from the hands at the top of the lift, the subsequent returning
action of the weight will be coming down with greater force than is the norm. It is important
to re-grasp the bar early in its descent. The earlier- rather-than- later philosophy will become immediately
apparent to the individual who waits too long before taking control of the resistance in the
eccentric contraction phase. A good approach to the Bench Press exercise (Smith-machine application)
is to practice releasing the bar before getting the maximum extreme of ROM distance (at the
top of the lift). Release the bar just after the sticking –point phase been cleared to ensure that a ballistic
application that is strong (but not to the extreme) has been made. Be ready to accept the returning
bar early in the descent. The suggestion here is to retake control of the bar just above the stickingpoint
during the early stages of learning this movement) in manner of avoiding having the bar pick
up too much momentum on its descent.
Too much momentum (mass x velocity) in coming down might be a burden that too quick and
forceful for the muscles to handle properly. The result is a jarring affect on the shoulder joint and a
straining (almost tearing) effect on the ligaments and tendons of the region. You should be able to
cradle the bar coming down in manner of cushioning the blow -as it were- of the returning weight.
Once you get the hang of this approach you can then extend the return distance to include a partial
area of the reverse sticking point that is you can allow the weight to enter the sticking-point zone
before cushioning its return Remember. It is a cradling of the bar that is required; not a stabbing or
stiff-armed approach to stopping the bar in its tracks approach that is put into play here. With a little
practice you should be able to do from the top of the lift. Remember though, the higher the bar is
extended the more you have to consider the difficulty factor regaining proper control of it. This concept
is (obviously) true of all of the ballistic training applications. There are many more ballistic training
exercise applications but for purposes of space control we have selected just the Bench Press exercise
for our analysis of the basic premise of Ballistic Training. You will be ready to explode faster to
a higher level in the ROM before releasing at the top of the lift.
Establishing Across-the-board Guideline of Resistance
It has been suggested that regardless of the exercise, Ballistic Training should be performed with
a resistance that represents 30-40% of the 1RM capability of that individual (Stoppani, 2006). It is my
recommendation that 40-45% (approximately) of the high-end set load (based on a 6-rep HESL
model) be used here at the beginning. I might be guilty of splitting-hairs here but increases can be
made along the way in accordance with strength and efficiency (skill-level) attainment. It is better to
utilize the err-on-the-side-of-caution adage with this potentially harmful advanced training concept (if
in fact, adjusting the protocol here is in fact, an error).
It is also suggested that 3-5 reps be performed in the Ballistic Training models in manner of providing
for maximum effort on all repetitions. It is important to prevent fatigue from creeping in as
this will defeat the purpose of the exercise. In a addition, the concept of fatigue and its potentially
harmful effects is magnified under the Ballistic Training model.
In manner of providing for a safeguard against injury a recommended longer rest time (3-4 minutes)
be implemented (Stoppani, 2006). (Note; not as long a rest period is required with the lighter
weight and the restricted blasting of the neophyte ballistic training performance).
Back Extensions
December 9, 2008 by Big Mojo
Filed under Upper Body, back
Back Extensions This exercise is often identified by the misnomer of “hyperextensions”. The usage of the prefix “hyper” implies that greater than normal ROM movements are performed during the execution of the exercise. Exaggerated movement applications (hyperextensions), are to be avoided as they cause stress of the vertebrae, discs, and facet-joints in the lower lumbar region. Instead, the correct movement application is more aptly described as “back extensions”. The posture of the body should be aligned in what is described as the normal anatomical position. Although instead of being in the vertical position the individual is (of course) in the horizontal position. Often-applied Misconception Frequently, athletes perform what they consider to be back hyperextensions by placing the legs under the pads of the back extension apparatus and raising up past the parallel line of the body. However, upon closer evaluation it is usually discovered
that the trainee has applied a bent-leg posture and the apparent “hyperextension” is really an extension movement as the upper and lower back (spine) is in line with the knees. However, even with the bent-leg posture this approach to the back extension exercise can prove to be of high-risk as there is significant pressure exerted upon the muscles as well as the vertebrae of the lower lumbar region. While the hyperextension application offers slightly increased activation of the erector spinae muscle, the risk outweighs the reward and the hyperextension application should be avoided. Considerations for Twisting Action The back extension exercise involves the activation of the transversospinal and erector spinae muscle groups. In order to incorporate the activation of the rotatores muscles a twisting action would need to be applied. Once again for reasons of safety, beginning weight-training students should be cautioned against applying the twisting actions during the movement application as additional stress can be placed upon the lower lumbar region. Advanced trainees can apply twisting actions but extreme caution must be taken to ensure the safe, efficient application of this variation. Correct Movement Methodology Essential The importance of applying correct exercise execution of the movements for the lower back cannot be overstated with reference made to potential injury risks. Lower back ailments can sideline an athlete for a long time sometimes a lifetime. If a trainee suffers an injury to the lower back all exercise capability is eliminated. Try performing a set of squats or even barbell curls with an injury to the lower lumbar region. Exercising the lower back can allow for an enhanced muscular structure as well as providing for an injury tive during the execution of other exercises. However, haphazard training of the lower back could easily induce severe career-threatening injury. Correct movement methodology is essential to the safe, efficient training of this highly-vulnerable area of the body.
Summary of Correct Exercise Execution - Assume the correct preparatory position for the movement by placing the body face-down upon the back extension apparatus. The hips should be supposed and the ankles secured beneath the provided foot pads. The back should be held in a flat rigid posture and the head should be held in an extended position. This posture should be maintained throughout the entire application of the movement. – Initiate the eccentric contraction of the movement by lowering the body slowly downward so that the upper torso forms a 90° angle with the legs. You will want to make certain to utilize strong neuralimpulsing into the muscles of the lower back in order to combat the forces of gravity which threaten to take over control of the lowering of the body. – Complete the eccentric contraction phase of the movement by stopping the descent of the torso at the desired 90° angle position of the torso and the legs and pause for two counts before attempting the initiation of the concentric contraction phase of thee movement. You will need to concentrate fully in order to avoid the natural tendency to allow the body to swing downward past the 90° angle formed by the upper torso and the legs. Coming down past the desired 90° angle encourages a swinging action of the body which can exert great stress upon the lower lumbar region. As well, coming down past the 90° angle induces a resulting “whipping” action of the body into the subsequent concentric contraction phase of the movement. – Begin the concentric contraction phase of the movement by slowly raising the upper torso to the desired horizontal position. You will need to utilize strong muscular contractions in the muscles of the lower back in order to protect the lower lumbar vertebrae, discs, and facet-joints from potential injury. Keys to the Lift - Assume and maintain the correct body posture throughout the entire application of the movement. – Utilize highly-concentrated, slow speed-of-contraction movement applications in order to accentuate the muscular emphasis and to alleviate the exertion placed upon the vertebral column. – Do not lower the body greater than a 90° angle and avoid the tendency to use a “whipping” action of the torso when initiating the subsequent concentric contraction as such flaws in technique will create great stress upon the lower lumbar region. – Remember the lever arm in this case is the body. Be extremely careful in applying the movement as any degree of carelessness could easily result in career-threatening injury.
Bent-over Back Raises – “Good Morning”
Bent-over Back Raises —”Good Morning”
The good morning exercise has a pleasant-sounding ring to it and is frequently associated with a simple, almost casual “awakening-to-the-day” activity; it may be thought of s being similar to throwing one’s hands overhead in a satisfying stretch. However, while the good morning exercise appears to have a simple stretching quality attributed to it, what should be remembered is that the exercise is designed to work the lower back. Whenever an attempt is made to exercise the region of the lower back great care must be taken to perform highly-concentrated movement applications. The good morning exercise provides an excellent manner in which to build the lumbar muscle which gives the thick well-muscled ridges on each side of the vertebral column. The benefits of developing the lower lumbar muscle extend beyond mere aesthetic value. Strengthening the lower lumbar region can prevent the onset of severe injury to the region of the lower back during the performance of other exercises. However, strict attention must be paid to proper movement methodology in order to provide for the safe, efficient application of this highly-valuable but deceivingly-dangerous exercise.
Considerations for Twisting Application Not advised for Beginning Students
It should be noted that the good morning exercise activates the erector spinae and transversospinal muscle groups. However the rotatores muscles are not activated in the conventional straight up-and-down application. A twisting action must be employed in order to activate the rotatores but it is advised that the beginning weight-training student refrain from twisting actions as great strain (torque) can be exerted upon the vertebral column exposing the trainee to high injury-risk.
Light Weight, Slow Movement Advised
Advanced trainees should utilize caution when performing the twisting variation of the good morning exercise. Very light resistance should be used and highly-controlled slow speed-ofcontraction movement applications should be utilized in order to reduce the high risk of injury associated with rotatores muscle activation.

Summary of Correct Exercise Execution
It is recommended that the beginning weight-training student use only natural body weight in learning this exercise. Resistance can be added once the rudiments of correct exercise execution have been learned. If resistance is used, a barbell would be positioned at the top of the trapezius (just slightly higher than would be the position of the barbell for the squat exercise). – Assume the correct preparatory stance by placing the feet at shoulder-width distance and bending the knees slightly in effort to provide for the alleviation of the potential strain (torque) on the lower back. Be sure to raise the head and to maintain a flat, stabilized position of the back to protect the lumbar region from potential injury. – Slowly initiate the eccentric contraction phase of the movement by bending forward at the waist. You will need to utilize strong neural impulsing into the muscles of the lower back in order to provide highly-controlled slow speed-of-contraction movement applications. Remember, the gluteals and hamstrings will want to take over control of the movement so a high level of concentration is needed to direct the impulses into the lower back muscles. – Complete the eccentric contraction phase of the exercise by lowering the torso to a position that is slightly-above parallel to the floor. Bending lower than the slightly-above parallel position encourages a breakdown in proper posture which can create injuries to the lower back. Lowering the body too far also induces a resulting “whipping” action of the torso during the initiation of the subsequent concentric contraction. You will want to remember to maintain the flexed position of the knees throughout the movement application. – Pause slowly at the completion of the eccentric phase of the movement and initiate the concentric contraction phase of the exercise by slowly raising the upper torso. You will need to concentrate fully in order to direct the neural-impulses into the muscles of the lower back. – Slowly complete the concentric contraction phase of the movement by establishing a vertical position of the body. You will want to resist the tendency to rise up too quickly and force the upper torso back to parallel. If the movement is carried too far there will be pressure exerted upon the vertebrae, disks, and facet joints of the lower lumbar region. – Pause at the fully-extended concentric contraction position and before initiating the eccentric contraction phase of the exercise.
Keys to the Lift -
Be conservative when selecting the resistance to be used in this exercise. – Maintain the knees-bent, head-up, flat-back posture throughout the entire execution of the movement in effort to avoid straining the lower lumbar region. – Apply highly-concentrated slow speed-of-contraction movement applications to avoid having momentum take over control of the movement and to optimize the effects of this exercise upon the muscles of the lower back. – Utilize the slightly-above-parallel-to-the-floor position of the upper torso in the eccentric contraction phase of the movement and a true vertical (not past) position of the upper torso during the concentric contraction phase of the movement.
Deadlift
December 9, 2008 by delphig
Filed under Lower Body, Upper Body, back
Deadlift
The deadlift exercise was outlined in the leg section as an exercise
for the muscles of the posterior thigh. However, as there are a
couple of important differences of accentuation between the deadlift
movement application for the hamstrings and the dead-lift
movement application for the lower back, the dead-lift will be reintroduced
with emphasis paid to the considerations for the lower
back.
The deadlift exercise represents the “granddaddy” movement of
lower back exercises. On the surface the movement appears to be a
simple one to perform. However, there are a number of crucial considerations
to take into account in order to provide for the proper
execution of this exercise. It is advised that the beginning weighttraining
enthusiast gain a thorough understanding of the rudiments
of correct movement methodology in order to provide for safe, efficient
utilization of this highly-beneficial, but potentially dangerous
exercise. It should be noted that this seemingly simple exercise (what
could be easier than bending down and picking up a bar and then
straightening up?) is responsible for many serious injuries.
Three Major Differences in Movement Application
Use the Floor As Opposed To a Raised Platform
The raised platform provides additional stretch as the ROM of
the movement application is increased. However, the benefit of addi-
tional stretching distance (increased ROM) is experienced in the
strings and does not provide additional growth and development benefit
for the lower back. However, the additional distance of the movement
application as provided for by the raised platform can induce great
stress upon the lower back. Raised platforms should be used if the trainee
experiences the problem of having the plates touch the floor before
the eccentric phase of the movement can be completed. Only a slightlyraised
platform should be used in order to provide a built-in bench mark
of how far the weight should be lowered. If a higher platform is used
the trainee should not extend all the way down to the floor as stretching
too far exerts tremendous pressure on the lower lumbar region which
could easily cause serious injury.

Apply Knee-Flexion
The dead-lift exercise for the lower back should be applied with a
bent-knee posture. The stiff-legged version of the dead-lift exercise is
applied when the hamstrings are being accentuated. If a stiff-legged approach
is taken with the lower back deadlift application two serious ramifications
may result:
- It forces a greater stretching of the thoracolumbar fascia which is not
flexible and could easily be injured.
- It creates a much poorer mechanical advantage for the lower
lumbar region which results in a
significant increase in the amount of torque that is directed to
the vertebrae in the lumbar region.
Neural-impulsing Directed to the Lower Back
The movement application is performed with strong neural-impulsing
being directed to the area of the lower back as opposed to being
directed to the hamstrings. Remember the concentration
should be directed to the desired area that will be worked in order to reduce injury risk and to enhance
growth and development potential.
Summary of Correct Exercise Execution
- Assume the correct preparatory posture by placing the feet at just slightly wider than shoulder
width distance.
- Utilizing hip and knee flexion bend over at the waist and grasp the barbell in a just-slightly- wider-
than-shoulder width pronated grip. You will want to make certain to have the bar placed close
to the shins. If the barbell is positioned too far in front of the body there is a risk of straining the
lower lumbar region during the initiation of the lift.
- Initiate the concentric contraction phase of the movement by slowly extending the upper torso
to a vertical position. You will want to make certain to maintain slight knee and hip flexion in
order to alleviate the risk of straining the lower back. As well you will want to make sure to keep
the hips low and the head high in order to provide for the most mechanically correct posture for
the lift.
- Complete the concentric contraction phase of the movement by extending to a vertical posture.
You will want to avoid extending past the vertical point as over-extending creates a jamming of
the facet-joints and could injure the highly-vulnerable disks in the lower lumbar region. Remember
to avoid any vigorous thrusting of the bar and to draw the weight up the front of the thighs.
- Maintaining hip and knee flexion slowly begin the eccentric contraction phase of the lift. You
will want to keep the head up in order to maintain a flat and rigid posture of the back. Dropping
the head will encourage a resulting rounding of the back posture which could create stress upon
the lower lumbar region.
- Slowly complete the eccentric contraction phase of the lift by extending downward and pausing
at the completion of the descent before initiating the concentric contraction.
Keys to the Lift
- Utilize sensible weight selection as the tendency with this exercise is to use too much weight.
- Utilize smooth, highly-controlled movement applications. No herky-jerky movements with this
one.
- Keep the head up and. the hips down in effort to maintain the desirable flat, rigid posture of the
back.
- Place the barbell close to the shins and draw the weight up the front of the thighs.
- Do not hyperextend at the completion of the concentric contraction phase of the movement.
- Slowly lower the weight utilizing strong neural-impulsing throughout the eccentric contraction
phase of the movement.
- Remember to maintain slight knee and hip flexion in order to alleviate potential strain on the
lower back.
- Direct strong neural-impulsing into the lower back and not into the hamstrings on this particular
movement application.
Here are a couple of videos that will help you with form. The next series will have better sound so turn your speakers up.
Lower Back Intro
Lower Back Training
Highly Vulnerable to Injury
The area that comprises the lower back is responsible for more dehabilitating injuries than any
area of the body. In fact, injuries sustained to the region of the lower back ruins more weight-training
careers than the rest of the body combined. Lower back pain and injury are not only prevalent in
weight-resistance training but in everyday “civilian” activity as well. How many times have we heard
about someone bending over to tie a shoelace and then not being able to straighten up? Or how
about the weekend-at-the-cottage syndrome where an unsuspecting victim has reached for a tow line
on the row boat or stretched down to gather some firewood and was left bent-over in agony. Acute
(or chronic) aching-back symptoms plague almost everyone at one time or another in their lives.
Why is it that the lower back is so highly vulnerable to injury?
Poor Mechanical Advantage
The foremost cause of lower back ailment is due to the extremely poor mechanical advantage of
the vertebral column. Whenever a person bends forward during the performance of an activity, from
lifting a bag of groceries to executing the initiation of the concentric contraction phase of the deadlift
exercise, great force is exerted upon a specific area of the vertebral column. The forces that are applied
are: the resistance that is being moved; the weight of the upper torso; and the force of gravity
(9.8 m•s-2). If the combined forces were to be endured by the entire structure of the vertebral column
the risks would be significantly reduced. However, as the forces are focused upon just two or three
vertebrates, the stress upon a small portion of the vertebral column is all too often of sufficient magnitude
to cause injury to the vertebrates, the discs, or the facet joints located on the vertebral column.
Muscles of the Lower Back Weak
Not helping the cause is the fact that the muscles of the region are often underdeveloped and as
a result are too weak to provide sufficient support to the area. Without proper assistance from the
surrounding muscle groups, the bony structure of the vertebral column is forced to endure the
stresses of the forces placed upon the region of the lower back.
Abdominal Muscles Weak
Additional problems arise from the fact that they rarely are the individual’s abdominal muscles
developed to the point where they could provide support for the duress placed upon the lower back.
Poorly-developed abdominals force the vertebral column to endure the forces placed upon the region
of the lower back. Conversely, strong abdominal muscles can provide ample support for the
muscles of the lower back and work in harmony to protect the vulnerable vertebral column from
stress-related injury.
Hamstring Muscles Not Flexible
Another major contributing factor to lower back injury is the lack of fully-stretched and welldeveloped
hamstring muscles. Most people have not done anything to provide for development of
their hamstrings as a result whenever they attempt to bend down to lift something they exert great
force upon the lower back. As the muscles of the lower back are not usually worked in everyday activities
they too are weak. The hamstring muscles insert into the pelvic region. If the hamstrings are
inflexible, they are not able to stretch out and “cushion” the effects of the load. The exerted forces
pull the pelvis downward creating a stretching of the lower back muscles which can cause injuries to
the muscular structure of the region.
When weight-resistance trainees attempt to work their lower backs through bending movements,
the exertion upon the lower back is severely magnified. If the hamstrings have not been worked and
are neither strong nor flexible, and if the abdominal muscles have not been developed, the forces that
are directed into lower back easily overpower the relatively weak muscles of the region. Without support
from the lower back muscles the vertebral column is forced to endure the force of the load.
Poorly-Applied Movement Methodology
The one area of consideration that the athletes have control over is the quality of their movement
methodology; yet, many weight-resistance trainees approach their back training with reckless
abandon. Poor exercise execution represents the single-most preventable cause of lower back ailment.
Poor exercise execution is fostered mainly by the fact that few athletes understand the basis of
vulnerability the lower back is exposed to. If the trainees were fully aware of the dangers involved in
poorly-applied technique in lower back training it is presumed that they would pay more attention to
detail when executing the various lower back exercises. The keys to success in providing for safe and
efficient training of the lower back are:
- Establish and maintain proper posture throughout the lift in order to reduce the stress exerted
upon the lower back;
- Utilize strong neural-impulsing into the muscles of the lower back to protect the vertebral column.

Location and Function
There are two basic sets or groups of spinal muscle that comprise the region of the lower back.
There is a deeply-set group known as the transversospinal muscles and a superficial group known as
the erector spinae muscles. Both muscle groups are covered by a thick sheath of muscle tissue known
as the thoracolumbar fascia which inserts along the origins of the latissimus dorsi. It should be noted
that fascia does not have the flexibility of muscle and as a result is highly-vulnerable to injury during
stress-related actions of poorly-performed exercise execution.
Erector Spinae Muscle Group
The superficial erector spinae muscle group is comprised of three separate (but intertwined)
muscles: iliocostalis (thoracis, and lumborum); longissimus dorsi; and spinalis dorsi. Together these
muscles cover the vast region between the neck to the sacrum which is located on the posterior portion,
and on both sides of the spine. The erector spinae muscles comprise the large ridges that can be
seen running down the length of the mid-line of a well-developed back.
Iliocostalis — Thoracis (A1), Lumborum (A2), Cervicis (A3)
The most laterally located of the erector spinae muscle group the iliocostalis (thoracis and lumborum)
muscle originates on the crest of the ilium and inserts into the nos. These two related muscles
act strongly to rotate the vertebral column.
Longissimus — Dorsi (B1), Cervicis (B2), Capitis (B3)
The longest of the erector spinae muscles, the longissimus dorsi runs almost the full length of
the area of the back. It originates from the most lateral projections of the vertebrae (transverse
processes), and insert in transverse processes which are located superiorly to their location. The longissimus
dorsi is involved in rotation of the spine.
Spinalis (C)
The spinalis muscle is the most medially located muscle of the erector spinae group and, unlike
the semi-spinalis muscle which originated at the mid-way point of the back, travels the entire length
of the mid-line of the back. It originates from the spinous process of the lumbar and thoracic (lower)
regions and insert in the thoracic and cervical vertebrae. The spinalis is involved in rotation of the
spine.
Transversospinal Muscle Group
The deep spinal muscle group derives its name from the location of the fibers which run from
the transverse process to the spinous process of the vertebrae. The transversospinal group is comprised
of the interspinalis (semi-spinalis), intertransversarii, rotatores, and multifidus muscles which
are generally structured in pairs.
Interspinalis (Semispinalis)
The interspinalis or semi-spinalis (as it is sometimes better known)—as its name would imply—
takes its place of origin at about the mid-portion of the vertebral column from the lower thoracic
vertebrae and will generally insert on the fifth to seventh vertebrae which are slightly superior (above)
its location. The interspinalis muscle is involved in the action of extension of both the cervical and.
thoracic vertebrae. This muscle is also involved in the action of rotation of the vertebrae.
Intertransversarii
Takes its place of origin along the vertebral column and attaches to the adjacent vertebrae. This
muscle is involved in extending the vertebral column.
Rotatores
The rotatores muscles originate on the transverse process of one
vertebra and insert into the spinous process of the next superior vertebrae.
This origin and insertion structure of the rotatores muscles
(as their name would imply) provide for a rotating action of the trunk
and are also involved in extension of the vertebral column.
Multifidus (D)
The multifidus muscle has the most fibers and is the thickest and
thus strongest of the transversospinal muscle group. This muscle is
situated in the hollows on either side of the vertebrae. The fibers of
this muscle take their origin from an inferior (lower) vertebra and
insert on superior (usually more than two) vertebrae. The multifidus
muscle aids in the action of rotation of the vertebral column and it
serves to stabilize the vertebral column during lifting actions.
Squat
December 8, 2008 by Big Mojo
Filed under Lower Body, hamstrings, legs, quads
Squat
One of the great quotes attributed to the game of golf in describing the essence of the game and
the route to success, is “drive for show- putt for dough”. With reference to weight resistance training
a similar adage might be employed: “the rest is show, squat for dough”. In this manner it might be
said that squatting is to weight-training what putting is to golf After all, when you get down to the
short strokes the winning physique can only be achieved with a solid leg training program.
Of all the movements in the weight-resistance training portfolio squatting potentially offers the
greatest reward while at the same time it presents the greatest concern with regard to injury risk. This
reward-versus-risk concept bas created a major controversy as to whether or not the squatting exer-
cise should be included in the beginner’s weight-training
program. In fact many experts have gone on record as being
opposed to the squat exercise for any weight resistance
training regardless of the experience level.
To Squat or Not to Squat
Proper Form Essential
The question of whether the risk outweighs the reward
can best be answered by catering to the basic requirement
of providing perfect exercise execution in this demanding
exercise. It is crucial that the aspiring weight-training student
take the time to learn the many considerations of
proper movement methodology in order to reduce the risk
of injury. If performed correctly, the squat exercise should
not present any greater risk than any other exercise. The
essential problem of squatting (with respect to injury risk),
is the fact that few trainees learn the correct execution
technique. There can be no denying the fact that improper
execution would leave the trainee highly-vulnerable to injury.
Sensible Resistance Required
Another key aspect to reducing the risk of injury is to
exercise common sense in the selection of the resistance to
be used. Far too often, erstwhile trainees (and this includes
experienced lifters), pack on the plates in effort to move
“impressive” loads. What should be remembered is that
while the squat exercise allows for heavy loading, rampant
optimism has produced many serious injuries. “Overloading”
the bar establishes an immediate danger risk as form is
sacrificed when too much weight is used. Any deviation
from proper form sets the lifter up for both internal and
external injury potential. It is essential that the trainee work
within her/his capability in order to provide proper validation
of a favorable position on the “to squat or not to
squat” question.
One interesting point you may want to bear in mind
when considering the advantages of utilizing proper movement
methodology and proper weight selection in the squat
movement is that while squatting is utilized to develop the
muscles of the legs, only a rare few of the multitudes of
injuries that occur during squatting applications actually
occur to the muscles. A vast majority of the recorded injuries
are related to the lower back and to the knees. This resultant
would suggest that there exists a problem with the
applied methodology rather than with the movement per se.
Considerations for Injury Prevention
There are three basic postures of application associated
with the squatting movement:
- Deep Squat.
- Full Squat.
- Half Squat.
We shall now examine the main points attributed to
each.
Deep Squat
Internal Injury Risk
The deep squat is generally regarded as a “no-no” in
most weight-training circles (particularly in the arenas of
bodybuilding). Although, this posture is frequently used in
weight-lifting events as a manner of approach that provides
the lifter with an opportunity to get under the weight in a
recovery position before attempting to raise the weight
overhead in the “clean-and-jerk” and “snatch” events. With
reference to bodybuilding, and general weight-resistance
training applications however, the deep squat is seen as “too
risky” with respect to both internal (knee and lower back
injury risks), and external (getting pinned beneath the
weight) injury potential.
External Injury Risk
The deep squat posture sees the trainee is an exaggerated almost-touching-the-floor-with-the-seat posture
which stretches the knee ligaments to their most vulnerable position. Particularly stressed in the deep squat position is
the patella ligament which is stretched over the knee-cap. As well, the deep squat position forces the trainee to come
up through a large “sticking-point” while the muscles and ligaments are in their most stretched (and thus weakest), position which exposes the
trainee to a number of injury risks not the least of which is the risk of becoming “trapped” under the
bar.
Keep the Heels on the Floor
If the trainee succumbs to the natural tendency of coming up onto the toes during the descent to
the deep squat position, (commonly referred to as the catcher’s stance), there is considerable risk of
injury as the base of support for the lift is now restricted to small area of the toes. The toes are not
designed to withstand the forces placed upon them in the performance of heavy squats. The catcher’s
stance provides necessary leverage and is very effective in the performance of the duties related to a
baseball catcher. However, the catcher’s stance is not in any Way, effective (and can prove to be extremely
hazardous), to the athlete attempting to perform the squat exercise. If the toes cannot support
the lift, the trainee suffers a knee-buckling response which results in a forward hip thrust action
which creates an arching in the back. The arched-back posture exposes the trainee to a risk of jamming
the facet joints in the lower lumbar region.
Danger of Teetering Backwards
Conversely, if the trainee maintains contact with the floor with the complete region of the bottom
of the feet (including the heels), he/she is in danger of teetering backwards which can produce
injuries to the entire length of the spinal column as well as to the shoulders. The knees are also exposed
to injury if the trainee is unable to effectively initiate and sustain the concentric contraction
phase of the movement. If the trainee experiences difficulty in raising up from thee floor the tendency
is to shimmy upward with the strong side of the body leading the way. Uneven balance in pressure
upon the spinal column can easily produce injuries to the back. In addition, the exterior and medial
cruciate ligaments of the knees are suddenly exposed to high injury risk as well. Clearly, due to the
multitude of injury potential the deep squat position is not recommended.
Full Squat
The next important debate that bas raged on since the discovery of the squat movement is
whether or not full squats should be considered too dangerous and if so should half-squats be utilized
instead. Full squats are determined as squats that provide for the trainee to bend at the hips and
the knees so that the lower legs and the thighs would be at a virtual 90° angle. This posture would
allow for the thighs to be just below parallel to the floor.
Much research has been presented for both the proponents and the detractors of the full squat
application. None of the research supports the contention that full squats create increased injury potential.
The natural movement range for the muscles of the hips allow for a natural application of the
actions of hip flexion and hip extension and thus, affecting a fun squat (thighs just below parallel to
the floor position), represents no specific danger to the trainee.
Advantages of Full Squat
Due to the fact that full squat applications promote the natural execution of hip-flexion, the full
squat approach provides for both reduced injury-risk and enhanced growth and development potential
for the trainee. There are five main components associated with both of these important considerations.
- The efficiency of the applied methodology.
- The speed-of-contraction in the eccentric phase of the
movement.
- The time allotted to the transitory period from the concentric
to eccentric phases of the movement application.
- The congruence of the applied resistance/strength relationship.
- The intensity of the neural-impulse activity directed to the
muscles that comprise the region of the hips.
There will be more information provided on these areas of
consideration in the subsequent section on exercise execution.
Half Squat
Half squats is the application which sees a 45° angle formed
between the thighs and the lower legs. While it would seem logical
that the half-squat would be much safer than the full squat,
an analysis of the two squat positions reveals that there is in fact,
greater pressure exerted upon the knees during the transitory
period from the eccentric to the concentric contraction phases
of the movement during the half squat application than is experienced
during the execution of the full squat. In addition, due to
the fact that half squats increase the activation of the muscles of
the knee-joint rather than the muscles of the hip-joint, and due
to the fact that the movement application is performed with a
reduced range-of-motion, the half-squat application can be considered
more dangerous, and far less effective (with respect to
growth and development potential), than the full squat application.
Injury Risks Associated with Returning the
Weight
It should be noted that there is a high-risk of injury associated
with returning the weight back onto the rack. At the conclusion
of a set the muscles are drained and the trainee is left
staggering back to the rack. The primary concern now is getting
rid of the weight and as quickly as possible. This is where the
problems arise. In their quest to “dump” the weight quickly, the
trainee often commits serious flaws in technique. The most
common error is that of using a thrusting action to throw the
weight back onto the rack.

Negative Results of Thrusting
In applying the thrusting action, the trainee is encouraged to
bend forward which encourages a dropping of the head action.
The spin is bent and the force vector now hits directly upon the
lower lumbar region. In addition, when there is a desperate need
to toss the bar back onto the rack the trainee misses the target
with gruesome results. The back can become more bent, establishing
increased injury risk to the spinal region and to the
knees. External injury risk is also increased significantly when ill
advised return actions are employed.
In order to ensure the safest, most efficient return of the
bar the trainee would be when-advised to walk the bar all the
way back to the rack using a vertical posture featuring a rigid
back and with the head held up. Once the bar is in contact with
the columns of the rack the trainee should now utilize hip and
knee flexion in lowering the bar onto the safety pins.
Proper Pin Placement
Note as well, the pins should be placed lower the shoulder
height in order to provide for the safe lift-off and return of the
bar. Most trainees utilize the below shoulder height position in
manner of providing for safe lift-off. Placing the pins higher
than shoulder height forces the trainee to rise up onto their toes
to lift the bar which is not an advisable practice. However, the
lower-than-shoulder-height placement of the pins often invokes
injury due to poor technique in the returning of the bar to the
pins. Frequently, the fatigued trainee will attempt to “dump” the
bar back onto the pins rather than lowering the bar by the utilization
of hip and knee flexion. The “dumping- action forces a
rounding of the back posture which establishes a high-risk position
of the body. The lower the pins, the more exaggerated the
lowering of the head and the rounding of the back response
which accentuates the risk of injury.
Caution Required in Returning the Weight
Treat the return of the weight with the same respect as the
rest of the exercise execution in order to lower the high risk of
injury associated with returning the weight. Returning the
weight to the safety pins is a matter of simply standing up
straight and then affecting the squat move by applying hip and
knee flexion while maintaining a straight and rigid position of
the back with the head held erect in lowering the weight slowly
and carefully onto the provided safety pins. It is – essential that the trainee reserve enough strength to
affect a squat (partial) movement in order to ensure the safe return of the weight.
Avoid “Dumping” the Weight
If the trainee is exhausted at the completion of the set then, quite naturally, he/she will want to
get rid of the weight in fastest, easiest manner possible. The easiest and fastest maneuver is the one
that sees the trainee bending at the hips (essentially establishing a “good morning” posture) and
“dumping” the weight onto the safety pins. To perform the “good-morning” posture with the loads
that are used for the squat exercise would be to send out an engraved invitation to injury. It requires
strong muscular contraction to combat the force of gravity; as such, it would be advisable to avoid
reaching a state of motor -unit exhaustion in the muscles of the legs in order to ensure that a proper
squat movement could be executed in manner of providing for the safe, efficient return of the bar
onto the rack.
Summary of Correct Exercise Execution
- Face the bar assuming a natural shoulder-width stance with the feet positioned with the toes
slightly outward.
- Utilize slight hip and knee flexion in order to achieve the desired preparatory posture. Adjust the
stance so that the bar is placed across the shoulders. Do not let the bar slide down the back during
the movement application. Frequently, the trainee, sensing the slipping of the weight, will
lean forward in effort to keep the bar in place. The forward lean position exposes the lower lumbar
region to in jury risk. As well, if the weight is placed too low on the back instead of on the
desired location atop the posterior region of the shoulders and across the upper portion of the
trapezius, the resistance will be supported to a large extent with the arms. With the shoulders in
the stretched (and thus vulnerable) position, they can easily become stretched or tom.
- Assume a natural grip with the hands placed just slightly-wider than-shoulder-width. Frequently,
trainees use a wide-grip that sees the arms almost fully extended and the wrists wrapped around
the bar. This position of the arms and the hands creates a natural tendency to roll the shoulders
forward. The rolling forward of the shoulders encourages a lowering of the head which further
encourages a resulting rounding of the back posture which, as outlined, creates a high-risk of injury
for the trainee. The wrist-around-the-bar position of the hands also encourages the trainee
to exert greater pressure on the knees as the force vector now comes down over the area of the
knees instead of being driven down through the area of the gluteals and hamstrings.
- Initiate the concentric contraction phase of the movement by utilizing knee and hip extension
and drive off the rear portion of the feet while making certain to keep the head up and the hips
down.
- You will want to utilize strong neural impulsing into the powerful quadriceps, hamstrings, and
gluteals in order to correctly execute the power phase of the movement. You will also want to
avoid “mapping-out” at the completion of the concentric contraction phase as the snapping action
could create a hyperextension effect upon the patella region. The snapping action could also
duress the lower lumbar region due to a sudden jamming of the facet- joints.
- Keeping the body straight with the back in a rigid, and flat position, and with the head held erect
with the chin up, slowly begin the eccentric contraction phase of the movement by Utilizing hip
and knee flexion. You will want to remember to avoid the tendency of raising the heels off the
floor during the execution of the eccentric contraction phase.
- Lower the weight slowly, and evenly, while maintaining a flat, rigid posture of the back. You will
need to concentrate fully in order to maintain the desired head-up/-hips-down posture.
- Slowly complete the eccentric contraction phase of the movement by utilizing hip and knee flexion
until the thighs are parallel to the floor. You will have to concentrate fully on avoiding the
natural tendency to rise up onto the toes during the completion of the eccentric contraction
phase of the movement.
- As you reach the finish position of the eccentric contraction phase of the movement you will
need to resist the urge to bounce into the subsequent concentric contraction by pausing for a full
count at the completion of the descent.
Keys to the Lift
- Utilize intelligent weight selection. Impress the crowd with you technique; not how much weight
it took to put you in the hospital.
- Apply slow speed-of-contraction movement applications.
- Concentrate fully throughout both the concentric and eccentric contraction portions of the lift.
Remember, is easy to forego proper form when performing the squat exercise. You must stay
mentally sharp during the execution of this exercise or you will pay a severe price!
- If you feel that you are in danger of breaking form if another “rep” is attempted, then simply
abort the set. Do not risk permanent injury in order to meet the predetermined quota of “reps”
you may have established for yourself.
- Remember to maintain the desired exercise posture and execution:
- Feet flat on the floor at all times.
- Back is to be held in a flat and rigid position at all times.
- Remember to keep the head erect and the hips down. Avoid lifting the head too high, as this
encourages a hyperextension posture of the back.
- Utilize hip flexion don’t just rely upon flexion action of the knees.
- Be sure to continue the eccentric contraction phase of the movement until the thighs are positioned
parallel to the floor.
- When you drive upward with the weight do so under control in order to avoid the general snapping
out action of the knees which creates a hyperextension effect upon the patella ligament.
- Utilize strong neural impulsing into the muscles that comprise the region of the hips in order to
ensure the strongest muscular response in effort to provide the safe, efficient execution of the
movement.
Abdominal Training
December 5, 2008 by Big Mojo
Filed under Ab Training Exposed, Upper Body
Abdominal Training
The “Abs”
Without question, the generally-referred to “abs” (region of the anterior and posterior abdominal
walls) emerge as the most neglected area of the entire muscular system. If you were to walk in to any
bustling health club at peak period you would expect to see the wall-to-wall mirrors reflecting a wallto-
wall sea of weight-training enthusiasts grunting and straining in pursuit of bigger muscles. Every
available bench in the heavy section will be bearing the burden of the maximum loading applied by a
plethora of training zealots, and the long line up to the pec-deck means you would be wise to opt for
a free-weight flye application instead. However, the number of people that are attacking their “abs”
can be readily accommodated with the utilization of a single sit-up board.
No one would consider preparing for a contest without including a very arduous abdominal routine
into the program. In fact no trainee could consider him/herself serious without the inclusion of
a comprehensive abdominal training program. Even occasional trainees would consider leaving out
their chest and back or shoulder routines. Leave out biceps and triceps? You must be staying out in
the sun too long! No one would leave their shoulders out of their training schematic nor would they
exclude their leg training from their program. How is it then that anyone could consider leaving out
their “ab” training for weeks on end? (If in fact, they had a abdominal routine to leave out). The
same degree of devotion that is paid to the other body parts should be extended to the abdominals;
otherwise hopes for a truly well-developed physique cannot be held with any degree of seriousness.
Location and Function
As a logical pre-requisite to any body-part training it would be necessary to garner a complete
understanding of the muscles that comprise the particular region under scrutiny before any attempt
was made to explain the proper movement methodology of the muscles, or any effort was made to
develop a routine of exercises for the specific body part. When reference is made to the abdominal
wall (anterior, posterior regions) the considerations for the importance of gaining a thorough awareness
of the muscles of the region takes on even greater significance.
In order to provide for a well-designed program of exercises that would effectively stimulate the
muscles of the region and at the same time, provide for reduced injury-risk potential, it would be es-
sential that the trainee understand the relationship that exists between the muscles of the abdominal
wall (anterior and posterior regions), and the vertebral column. It is also vital that the trainee be
aware of the biomechanical association that is shared by the two regions in order to avoid wasting
time and energy in futile search of superior abdominal development. Even more crucial, is the concern
of avoiding the risk of serious injury which can often occur as a result of ignorance of proper
execution of the abdominal exercises. Aside from providing for the finishing touches to the wellhoned
physique, good abdominal development can provide for a measure of injury prevention for
the always highly-vulnerable lower lumbar region. However, poorly-advised movements can not only
fail to provide for the hoped-for results, but can lead directly to serious injury. Proper awareness of
the location and function of the muscles of the anterior and posterior abdominal would be of extreme
benefit to those seeking safe, efficient training approaches for the abdominal muscles.
No Skeletal Support
The abdominal region receives no skeletal support within the abdominal cavity. The area derives
its strength and integrity entirely from its muscle structure. The abdominal region is comprised of
three layers of muscle with each having its fibers running in a different direction. This phenomenon
of different fiber direction provides the required tension and strength which makes up for the lack of
bony structure in the area.
The abdominal muscles almost exclusively create the abdominal wall. These muscles provide
support, as well as protection, for the abdominal organs, and they provide assistance to the diaphragm
during respiration. The abdominal serve to flex the vertebral column and depress the ribs. The
contraction of the abdominal raises the intra-abdominal pressure which is necessary for defecation
and contributes to the stability of the thorax in times of strain such as heavy lifting. When the legs are
raised from a supine position the abdominal serve as fixators of the pelvis from which the hip-flexor
muscles originate.
Rectus Abdominis (A)
Location
The rectus abdominis muscle represents the main abdominal muscle and forms the prominent
ridges of muscle mass in the frontal abdominal region. The rectus abdominis is a narrow flat muscle
situated on the ventral aspect of the abdominal wall. The muscle runs vertically across the abdominal
wall from the crest of pubis bone to the cartilage of the fifth, sixth and seventh ribs. The rectus abdominis
has a right and left portion that is separated by a one-inch tendinous strip (linea alba). Each
rectus abdominis is covered by the fascia of the oblique and transversus muscles. Each set of rectus
abdominis is cut by three tendinous inscriptions that provide for a distinct division of muscle that
rises above the separation.
Function
The rectus abdominis act to compress the abdominal cavity and assist in the actions of forced
expiration, defecation, and urination. The rectus abdominis also acts to produce lateral-flexion (sidebends)
and also serves to flex the vertebral column during the action of spinal-flexion. The concepts
relating to the ability to produce spinal-flexion (as opposed to hip-flexion) form the crux of the discussions
on abdominal training and will be explored in detail in the pages that follow.
The Oblique Muscles
External Oblique (B)
Location
As the name would indicate, this muscle originates on the external surface of the rectus abdominis
on the lower eight ribs of the upper end of the ilium, the pubis crest, and the lower portion of the
linea alba. Its fibers run diagonally and upward and in a horizontal direction from the lower end of
the abdomen. The muscle inserts on the linea alba and the anterior portion of the iliac crest.
Function
The external oblique joins the rectus abdominis in the actions of forced expiration, defecation,
and urination. It also serves in the actions of flexion and rotation of the vertebral column.
Internal Oblique (C)
Location
The internal oblique lies just beneath and internally to the external oblique and its fibers run upward
and medially to connect with the internal intercostals muscles that cover the ribs. This muscle
officially on the iliac crest and the lumbodorsal fascia and inserts on the linea alba, the pubic crest,
and the first to fourth rib.
Function
Compresses the abdominopelvic cavity and assists in the action of flexion and rotation of the
vertebral column.
It should be noted that despite their location in the anterior region of the abdominal wall, the
above-listed abdominal muscles have a profound effect upon the function of the vertebral column.
Transversus Abdominis (D)
Location
This little known abdominal region muscle originates on the iliac crest, the lumbodorsal fascia
and the costal cartilages of the last six nos.
Function
The transversus abdominis compresses the abdominopelvic cavity.
Posterior Abdominal Wall
Quadratus Lumborum
Location
The quadratus lumborum is a long thick muscle which originates on the iliac crest and the iliolumbar
ligament and inserts on the lower region of the twelfth rib and the transverse process of the
upper lumbar vertebrae.
Function
This muscle has an even greater (direct) effect upon the lower back as it is responsible for the action
of pulling the thoracic cage towards the pelvis and is also involved in the action of same-side
abduction of the vertebral column. It assists the oblique muscles in the action of lateral-flexion (sidebends).
Erector Spinae Group
Iliocostalis Thoracis/Iliocostalis Lumbar/Longissimus Dorsi/Spinalis Dorsi
Location
The erector spinae muscles are all intertwined and as they all work in harmony with one another
they are considered as one muscle. This group provides the ridges aside a deep groove that is visible
in the lower back of highly-developed body-builders. The erector spinae group covers a large area
originating from the neck and running down into sacrum on both sides of the spine. Specifically
these muscles originate on the crest of the ilium, sacrum (lower surface), the borders of the lower
seven ribs, as well as the spinous process of the entire group of lumbar vertebrae and the lower four
thoracic vertebrae. These muscles all insert on the transverse processes of all the vertebrae.
Function
These muscles would be highly activated during the action of spinal rotation. In the twisting exercise
for example when the shoulders rotate around the spine, the spine provides the axis of rotation
with the externals working on one side in correlation with there opposite-side counterparts establishing
a pulling or torque action across the abdomen.
Iliopsoas group
Psoas Major
Location
The psoas major also comprises the region of the posterior abdominal wall but it acts principally
on the femur bone. It shall however be included in our discussion on the muscles of the posterior
abdominal wall. A long thick muscle, the psoas major originates lateral to the lumbar region of the
back and inserts on the vertebral discs of the lower lumbar region.
Function
The psoas major is involved in the action of hip-flexion which occurs during the leg-raise (off
the floor), seated knees-to-chest and vertical knees-to-chest exercises.
Iliacus
Location
The iliacus is a large triangular-shaped muscle that is situated on the lateral portion of the psoas
major. Its fibers run downward and inward most of which attach to the psoas tendon and inserts on
the lesser trochanter of the femur.
Function
As the muscle crosses over the hip-joint, it serves in the action of hip-flexion and joins in the actions
of the psoas major to function during the leg raise action (off the floor) or knees-to-chest
(seated and vertical) exercises.
Psoas Minor
Location
This muscle is a relatively ineffective muscle due to its long tendon and small muscle construction.
It originates from the last thoracic and first lumbar vertebrae and inserts on the pubic bone of
the pelvis.
Function
The psoas minor serves to support the action of hip-flexion of the psoas major and iliacus muscles.
Muscle Activation
It can be readily acknowledged that working the “abs” is hard work and even more discouraging
is the fact that it is extremely boring to most trainees. After all, where is the fun found in working so
hard and not gaining the satisfaction of witnessing a “pump”? Besides, ab routines rarely produce the
results that are achieved with the other body-part routines. Why don’t we achieve the same response
in the abs as we do with arms and legs and chest etc…? Well we just might be getting results that
simply are not showing because the muscle that is being developed is hidden under the layers of
excess weight that is all-too-frequently carried by the majority of the population (approximately
90%).
Considerations for the Actions of Spinal or Hip-flexion
In order to maximally stimulate the muscles of the abdominal region it is necessary to apply an
action of spinal-flexion. What frequently occurs is that in quest of developing his/her abdominals,
the trainee embarks earnestly on a routine of “so-called” abdominal exercise which, in fact, does not
emphasize the abdominal, but instead provide activation of the hip-joint (flexors and extensors)
muscles. Activation of the hip-joint does not provide maximum stimulation of the abdominal region,
and as a result, the individual’s abdominal region remains underdeveloped.
For example, have you ever felt compelled to put a halt to a series of sit-ups due to the fatigue
experienced in the frontal thighs (as opposed to the desired “attack region” of the abdominal?) This
is simply because the thighs were receiving the brunt of the load during the movement and as a result
the abdominal were left far less stimulated than they should have been in order to provide for maximum
growth and development.
Anterior Region
November 29, 2008 by Big Mojo
Filed under Lower Body, calfs, legs
Anterior Region
Whenever reference is made to the calf muscles the general thinking appears to center upon the
above-mentioned gastrocnemius and soleus muscles of the posterior portion of the calves. The con
siderations given to the anterior portion of the lower leg
range from minimal to non-existent. Most weightresistance
trainees assume the anterior musculature of
the calves is really the posterior muscles being visible
from the anterior view.
No one can argue the highly-visible musculature of
the fully developed gastrocnemius and, to a lesser degree,
the soleus muscles; however, there is much more to the
considerations for anterior lower leg development than
merely being able to see the posterior muscles form the
anterior vantage point.
Location and Function
The muscles that comprise the anterior portion of
the lower leg are the tibialis anterior, extensor hallucis
longus, and extensor digitorum longus.
Tibialis Anterior (A)
Location
Originates on the tibia bone just below the knee and
runs the entire length of the lower leg inserting on the
cuneiform on the back of the foot as well as the medial
portion of the foot on the metatarsal bone just behind
the big toe.
Function
This highly-visible muscle is involved in dorsi flexion
and inversion actions of the ankle joint.
Extensor Digitorum Longus (B)
Location
It originates on the lateral condyle of the tibia near
the knee and from the upper region of the anterior surface
of the fibula. This prominent muscle also runs the
entire length of the anterior lower leg and inserts on the
phalanges of the middle and distal bones of the second
to fifth toes.
Function
Actions of dorsi flexion and eversion of the ankle as well as extension of the toes involve the extensor
digitorum longus.
In addition, the beginning weight-training student would be well-advised to consider the muscles
of the lateral portion of the lower leg in designing his/her calf routine. The muscles of the lateral
portion of the calves offer accentuation and definition of the muscular structure of the calves. Two
major muscles of the lateral region of the lower leg are the peroneus longus and peroneus brevis.
Extensor Hallucis Longus (C)
Location
Lies between the tibialis anterior and the extensor digitorum longus muscles and originates on
the anterior middle portion of the fibula and inserts on the distal phalanx of the big toe.
Function
The extensor hallucis longus is involved in dorsi flexion of the ankle and extension of the big
toe.
Peroneus Longus (D)
Location
Originates on the head and upper portion of the shaft of the fibula and inserts under the sole of
the foot on the base of the first metatarsal.
Function
This muscle is involved in plantar flexion and eversion of the ankle.
Peroneus Brevis (E)
Location
Originates on the distal shaft of the fibula and inserts on the base of the malleolus and on the
base of the fifth metatarsal.
Function
Plantar flexion and eversion of the ankle involve this muscle.
Muscle Activation
The muscles of the anterior portion of the calf do not posses the same force-generating capability
as the muscles of the posterior calf and as such, great care must be taken to avoid straining the
more delicate anterior calf region.
Heavy weight should be avoided with
anterior calf training and slow speed of
contraction movement application should
be used in order to provide for safe efficient
training of the delicate anterior lower
leg muscles.


