Progression Models in Resistance Training for Healthy Adults

Модели прогрессии в силовой тренировке для здоровых взрослых
William J. Kraemer, Robert U. Newton, Steven J. Fleck, Nicholas A. Ratamess, Jay R. Hoffman, Kent Adams, E. Cafarelli, Gary A. Dudley, Cathryn R. Dooly, Matthew S. Feigenbaum, Barry A. Franklin, Andrew C. Fry, Jeffrey A. Potteiger, Michael H. Stone, Travis Triplett-McBride
2002-02-01

hypertrophy trainingperiodized loadingpower trainingresistance training progressionstrength training
In order to stimulate further adaptation toward a specific training goal(s), progression in the type of resistance training protocol used is necessary. The optimal characteristics of strength-specific programs include the use of both concentric and eccentric muscle actions and the performance of both single- and multiple-joint exercises. It is also recommended that the strength program sequence exercises to optimize the quality of the exercise intensity (large before small muscle group exercises, multiple-joint exercises before single-joint exercises, and higher intensity before lower intensity exercises). For initial resistances, it is recommended that loads corresponding to 8-12 repetition maximum (RM) be used in novice training. For intermediate to advanced training, it is recommended that individuals use a wider loading range, from 1-12 RM in a periodized fashion, with eventual emphasis on heavy loading (1-6 RM) using at least 3-min rest periods between sets performed at a moderate contraction velocity (1-2 s concentric, 1-2 s eccentric). When training at a specific RM load, it is recommended that 2-10% increase in load be applied when the individual can perform the current workload for one to two repetitions over the desired number. The recommendation for training frequency is 2-3 d x wk(-1) for novice and intermediate training and 4-5 d x wk(-1) for advanced training. Similar program designs are recommended for hypertrophy training with respect to exercise selection and frequency. For loading, it is recommended that loads corresponding to 1-12 RM be used in periodized fashion, with emphasis on the 6-12 RM zone using 1- to 2-min rest periods between sets at a moderate velocity. Higher volume, multiple-set programs are recommended for maximizing hypertrophy. Progression in power training entails two general loading strategies: 1) strength training, and 2) use of light loads (30-60% of 1 RM) performed at a fast contraction velocity with 2-3 min of rest between sets for multiple sets per exercise. It is also recommended that emphasis be placed on multiple-joint exercises, especially those involving the total body. For local muscular endurance training, it is recommended that light to moderate loads (40-60% of 1 RM) be performed for high repetitions (> 15) using short rest periods (< 90 s). In the interpretation of this position stand, as with prior ones, the recommendations should be viewed in context of the individual's target goals, physical capacity, and training status.
1
Effective progression in resistance training requires changing protocol characteristics to continue adaptation toward specific goals.
2
Hypertrophy training should use periodized 1–12 RM loading emphasizing 6–12 RM, 1–2-minute rests, and higher-volume multiple-set programs, while power training combines strength loading with 30–60% 1 RM performed rapidly and 2–3-minute rests.
3
Load should increase by 2–10% when trainees exceed the target repetitions by one or two repetitions; recommended frequency is 2–3 sessions weekly for novice/intermediate trainees and 4–5 for advanced trainees.
4
Novices should begin with 8–12 RM loads, whereas intermediate and advanced trainees should use periodized 1–12 RM loading, eventually emphasizing 1–6 RM loads with at least 3-minute rests.
5
Strength programs should combine concentric and eccentric actions, single- and multiple-joint exercises, and sequence large-muscle, multiple-joint, and higher-intensity exercises first.

Resistance training programs for healthy adults

Progression strategies and optimal protocol characteristics for strength, hypertrophy, and power adaptations

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2002-02-01
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Authors
William J. Kraemer
Robert U. Newton
Steven J. Fleck
Nicholas A. Ratamess
Jay R. Hoffman
Kent Adams
E. Cafarelli
Gary A. Dudley
Cathryn R. Dooly
Matthew S. Feigenbaum
Barry A. Franklin
Andrew C. Fry
Jeffrey A. Potteiger
Michael H. Stone
Travis Triplett-McBride
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