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Published in: Sports Medicine 11/2005

01-11-2005 | Review Article

Possible Stimuli for Strength and Power Adaptation

Acute Mechanical Responses

Authors: Blair Crewther, John Cronin, Justin Keogh

Published in: Sports Medicine | Issue 11/2005

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Abstract

A great deal of literature has investigated the effects of various resistance training programmes on strength and power changes. Surprisingly, however, our understanding of the stimuli that affect adaptation still remains relatively unexplained. It is thought that strength and power adaptation is mediated by mechanical stimuli, that is the kinematics and kinetics associated with resistance exercise (e.g. forces, contraction duration, power and work), and their interaction with other hormonal and metabolic factors. However, the effect of different combinations of kinematic and kinetic variables and their contribution to adaptation is unclear. The mechanical response to single repetitions has been investigated by a number of researchers; however, it seems problematic to extrapolate the findings of this type of research to the responses associated with a typical resistance training session. That is, resistance training is typified by multiple repetitions, sets and exercises, rest periods of varying durations and different movement techniques (e.g. controlled and explosive). Understanding the mechanical stimuli afforded by such loading schemes would intuitively lead to a better appreciation of how various mechanical stimuli affect adaptation. It will be evident throughout this article that very little research has adopted such an approach; hence our understanding in this area remains rudimentary at best. One should therefore remain cognizant of the limitations that exist in the interpretation of research in this field. We contend that strength and power research needs to adopt a set kinematic and kinetic analysis to improve our understanding of how to optimise strength and power.
Literature
1.
go back to reference Sale D. Neural adaptation to strength training. In: Komi PV, editor. Strength and power in sport. Oxford: Blackwell Scientific Publications, 1992: 249–265 Sale D. Neural adaptation to strength training. In: Komi PV, editor. Strength and power in sport. Oxford: Blackwell Scientific Publications, 1992: 249–265
2.
go back to reference Bloomer RJ, Ives JC. Varying neural and hypertrophic influences on a strength program. Nat Strength Cond Assoc J 2000; 22 (2): 30–35CrossRef Bloomer RJ, Ives JC. Varying neural and hypertrophic influences on a strength program. Nat Strength Cond Assoc J 2000; 22 (2): 30–35CrossRef
3.
go back to reference MacDougall JD. Hypertrophy or hyperplasia. In: Komi PV, editor. Strength and power in sport. Oxford: Blackwell Scientific Publications, 1992: 230–238 MacDougall JD. Hypertrophy or hyperplasia. In: Komi PV, editor. Strength and power in sport. Oxford: Blackwell Scientific Publications, 1992: 230–238
4.
go back to reference McDonagh MJN, Davies CTM. Adaptive response of mammalian skeletal muscle to exercise with high loads. Eur J Appl Physiol 1984; 52: 139–155CrossRef McDonagh MJN, Davies CTM. Adaptive response of mammalian skeletal muscle to exercise with high loads. Eur J Appl Physiol 1984; 52: 139–155CrossRef
5.
go back to reference Kraemer WJ, Adams K, Cafarelli E, et al. Progression models in resistance training for healthy adults. Med Sci Sports Exerc 2002; 34 (2): 364–380PubMedCrossRef Kraemer WJ, Adams K, Cafarelli E, et al. Progression models in resistance training for healthy adults. Med Sci Sports Exerc 2002; 34 (2): 364–380PubMedCrossRef
6.
go back to reference Komi P, Hakkinen K. Strength and power. In: Dirix A, Knuttgen H, Tittel K, editors. The Olympic book of sports medicine. Oxford: Blackwell Scientific Publications, 1988: 181–193 Komi P, Hakkinen K. Strength and power. In: Dirix A, Knuttgen H, Tittel K, editors. The Olympic book of sports medicine. Oxford: Blackwell Scientific Publications, 1988: 181–193
7.
go back to reference Lyttle AD, Wilson GJ, Ostrowski KJ. Enhancing performance: maximal power versus combined weights and plyometrics training. J Strength Cond Res 1996; 10 (3): 173–179 Lyttle AD, Wilson GJ, Ostrowski KJ. Enhancing performance: maximal power versus combined weights and plyometrics training. J Strength Cond Res 1996; 10 (3): 173–179
8.
go back to reference Harris GR, Stone MH, O’Bryant HS, et al. Short-term performance effects of high power, high force, or combined weight-training methods. J Strength Cond Res 2000; 14 (1): 14–20 Harris GR, Stone MH, O’Bryant HS, et al. Short-term performance effects of high power, high force, or combined weight-training methods. J Strength Cond Res 2000; 14 (1): 14–20
9.
go back to reference Moss BM, Refsnes PE, Abildgaard A, et al. Effects of maximal effort strength training with different loads on dynamic strength, cross-sectional area, load-power and load-velocity relationships. Eur J Appl Physiol 1997; 75 (3): 193–199CrossRef Moss BM, Refsnes PE, Abildgaard A, et al. Effects of maximal effort strength training with different loads on dynamic strength, cross-sectional area, load-power and load-velocity relationships. Eur J Appl Physiol 1997; 75 (3): 193–199CrossRef
10.
go back to reference Schmidtbleicher D, Buehrle M. Neuronal adaptation and increase of cross-sectional area studying different strength training methods. In: Jonsson B, editor. Biomechanics X-B. Champaign (IL): Human Kinetics, 1987 Schmidtbleicher D, Buehrle M. Neuronal adaptation and increase of cross-sectional area studying different strength training methods. In: Jonsson B, editor. Biomechanics X-B. Champaign (IL): Human Kinetics, 1987
11.
go back to reference Dahl HA, Aaserud R, Jensen J. Muscle hypertrophy after light and heavy resistance training [abstract]. Med Sci Sports Exerc 1992; 24 (5): S55 Dahl HA, Aaserud R, Jensen J. Muscle hypertrophy after light and heavy resistance training [abstract]. Med Sci Sports Exerc 1992; 24 (5): S55
12.
go back to reference Newton RU, Kraemer WJ, Hakkinen K, et al. Kinematics, kinetics and muscle activation during explosive upper body movements. J Appl Biomech 1996; 12: 31–43 Newton RU, Kraemer WJ, Hakkinen K, et al. Kinematics, kinetics and muscle activation during explosive upper body movements. J Appl Biomech 1996; 12: 31–43
13.
go back to reference Stone M, Plisk SS, Stone ME, et al. Athletic performance development: volume load -1 set vs multiple sets, training velocity and training variation. Strength Cond J 1998; 20 (6): 22–31CrossRef Stone M, Plisk SS, Stone ME, et al. Athletic performance development: volume load -1 set vs multiple sets, training velocity and training variation. Strength Cond J 1998; 20 (6): 22–31CrossRef
14.
go back to reference McBride JM, Triplett-McBride T, Davie A, et al. The effect of heavy- vs light-load jump squats on the development of strength, power and speed. J Strength Cond Res 2002; 16 (1): 75–82PubMed McBride JM, Triplett-McBride T, Davie A, et al. The effect of heavy- vs light-load jump squats on the development of strength, power and speed. J Strength Cond Res 2002; 16 (1): 75–82PubMed
15.
go back to reference Fatouros IG, Jamurtas AZ, Leontsini JD, et al. Evaluation of plyometric exercise training, weight training, and their combination on vertical jumping performance and leg strength. J Strength Cond Res 2000; 14 (4): 470–476 Fatouros IG, Jamurtas AZ, Leontsini JD, et al. Evaluation of plyometric exercise training, weight training, and their combination on vertical jumping performance and leg strength. J Strength Cond Res 2000; 14 (4): 470–476
16.
go back to reference Adams K, O’Shea JP, O’Shea KL, et al. The effect of six weeks of squat, plyometric and squat-plyometric training on power production. J Appl Sport Sci Res 1992; 6 (1): 36–41 Adams K, O’Shea JP, O’Shea KL, et al. The effect of six weeks of squat, plyometric and squat-plyometric training on power production. J Appl Sport Sci Res 1992; 6 (1): 36–41
17.
go back to reference Hoff J, Almasbakk B. The effects of maximum strength training on throwing velocity and muscle strength in female team-handball players. J Strength Cond Res 1995; 9 (4): 225–258 Hoff J, Almasbakk B. The effects of maximum strength training on throwing velocity and muscle strength in female team-handball players. J Strength Cond Res 1995; 9 (4): 225–258
18.
go back to reference Cronin J, McNair PJ, Marshall RN. Developing explosive power: a comparison of technique and training. J Sci Med Sport 2001; (1): 59–70CrossRef Cronin J, McNair PJ, Marshall RN. Developing explosive power: a comparison of technique and training. J Sci Med Sport 2001; (1): 59–70CrossRef
19.
go back to reference Newton RU, Murphy AJ, Humphries B J, et al. Influence of load and stretch shortening cycle on the kinematics, kinetics and muscle activation that occurs during explosive upper-body movements. Eur J Appl Physiol 1997; 75: 333–342CrossRef Newton RU, Murphy AJ, Humphries B J, et al. Influence of load and stretch shortening cycle on the kinematics, kinetics and muscle activation that occurs during explosive upper-body movements. Eur J Appl Physiol 1997; 75: 333–342CrossRef
20.
go back to reference Baker D, Nance S, Moore M. The load that maximizes the average mechanical power output during explosive bench press throws in highly trained athletes. J Strength Cond Res 2001; 15 (1): 20–24PubMed Baker D, Nance S, Moore M. The load that maximizes the average mechanical power output during explosive bench press throws in highly trained athletes. J Strength Cond Res 2001; 15 (1): 20–24PubMed
21.
go back to reference Baker D. Comparison of upper-body strength and power between professional and college-aged rugby league players. J Strength Cond Res 2001; 15 (1): 30–35PubMed Baker D. Comparison of upper-body strength and power between professional and college-aged rugby league players. J Strength Cond Res 2001; 15 (1): 30–35PubMed
22.
go back to reference Murphy AJ, Wilson GJ, Pryor JF. Use of the iso-inertial force mass relationship in the prediction of dynamic human performance. Eur J Appl Physiol 1994; 69: 250–257CrossRef Murphy AJ, Wilson GJ, Pryor JF. Use of the iso-inertial force mass relationship in the prediction of dynamic human performance. Eur J Appl Physiol 1994; 69: 250–257CrossRef
23.
go back to reference Gregor RJ. Skeletal muscle mechanics and movement. In: Grabiner MD, editor. Current issues in biomechanics. Champaign (IL): Human Kinetics, 1993: 171–214 Gregor RJ. Skeletal muscle mechanics and movement. In: Grabiner MD, editor. Current issues in biomechanics. Champaign (IL): Human Kinetics, 1993: 171–214
24.
go back to reference Herzog W. Force production in human skeletal muscle. In: Nigg BM, Macintosh BR, Mester J, editors. Biomechanics and biology of movement. Champaign (IL): Human Kinetics, 2000: 269–281 Herzog W. Force production in human skeletal muscle. In: Nigg BM, Macintosh BR, Mester J, editors. Biomechanics and biology of movement. Champaign (IL): Human Kinetics, 2000: 269–281
25.
go back to reference Enoka RM. Chronic adaptations: neuromechanical basis of kinesiology. Champaign (IL): Human Kinetics, 2002: 397–447 Enoka RM. Chronic adaptations: neuromechanical basis of kinesiology. Champaign (IL): Human Kinetics, 2002: 397–447
26.
go back to reference McBride JM, Triplett-McBride T, Davie A, et al. A comparison of strength and power characteristics between power lifters, Olympic lifters and sprinters. J Strength Cond Res 1999; 13 (1): 58–66 McBride JM, Triplett-McBride T, Davie A, et al. A comparison of strength and power characteristics between power lifters, Olympic lifters and sprinters. J Strength Cond Res 1999; 13 (1): 58–66
27.
go back to reference Cronin J, Crewther B. A comparison of heavy and light load training and their proposed effects on increasing strength and hypertrophy. Strength Cond Coach 2003; 10 (4): 19–22 Cronin J, Crewther B. A comparison of heavy and light load training and their proposed effects on increasing strength and hypertrophy. Strength Cond Coach 2003; 10 (4): 19–22
28.
go back to reference Cronin J, McNair PJ, Marshall RN. Force-velocity analysis of strength-training techniques and load: implications for training strategy and research. J Strength Cond Res 2003; 17 (1): 148–155PubMed Cronin J, McNair PJ, Marshall RN. Force-velocity analysis of strength-training techniques and load: implications for training strategy and research. J Strength Cond Res 2003; 17 (1): 148–155PubMed
29.
go back to reference Brown S, Thompson W, Bailey J, et al. Blood lactate response to weightlifting in endurance and weight trained men. J Appl Sport Sci Res 1990; 4 (4): 122–130 Brown S, Thompson W, Bailey J, et al. Blood lactate response to weightlifting in endurance and weight trained men. J Appl Sport Sci Res 1990; 4 (4): 122–130
30.
go back to reference Craig BW, Kang H. Growth hormone release following single versus multiple sets of back squats: total work versus power. J Strength Cond Res 1994; 8 (4): 270–275 Craig BW, Kang H. Growth hormone release following single versus multiple sets of back squats: total work versus power. J Strength Cond Res 1994; 8 (4): 270–275
31.
go back to reference Kang H, Martino FP, Russo V, et al. The influence of repetitions maximum on GH release following the back squat and leg press in trained men: preliminary results. J Strength Cond Res 1996; 10 (3): 148–152 Kang H, Martino FP, Russo V, et al. The influence of repetitions maximum on GH release following the back squat and leg press in trained men: preliminary results. J Strength Cond Res 1996; 10 (3): 148–152
32.
go back to reference Faulkner JA, Claflin DR, Cully KK. Power output of fast and slow fibres from human skeletal muscles. In: Jones NL, McCartney N, McComas AJ, editors. Human muscle power. Champaign (IL): Human Kinetics, 1986: 81–93 Faulkner JA, Claflin DR, Cully KK. Power output of fast and slow fibres from human skeletal muscles. In: Jones NL, McCartney N, McComas AJ, editors. Human muscle power. Champaign (IL): Human Kinetics, 1986: 81–93
33.
go back to reference Moritani T. Time course of adaptations during strength and power training. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publications, 1992: 266–278 Moritani T. Time course of adaptations during strength and power training. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publications, 1992: 266–278
34.
go back to reference Perrine JJ. The biophysics of maximal muscle power output: methods and problems of measurement. In: Jones LM, McCartney N, McComas AJ, editors. Human muscle power. Champaign (IL): Human Kinetics, 1986: 15–25 Perrine JJ. The biophysics of maximal muscle power output: methods and problems of measurement. In: Jones LM, McCartney N, McComas AJ, editors. Human muscle power. Champaign (IL): Human Kinetics, 1986: 15–25
35.
go back to reference Kaneko M, Fuchimoto T, Toji H, et al. Training effect of different loads on the force-velocity relationship and mechanical power output in human muscle. Scand J Sport Sci 1983; 5: 50–55 Kaneko M, Fuchimoto T, Toji H, et al. Training effect of different loads on the force-velocity relationship and mechanical power output in human muscle. Scand J Sport Sci 1983; 5: 50–55
36.
go back to reference Thomas M, Fiatarone MA, Fielding RA. Leg power in young women: relationship to body composition, strength and function. Med Sci Sports Exerc 1996; 28 (10): 1321–1326PubMedCrossRef Thomas M, Fiatarone MA, Fielding RA. Leg power in young women: relationship to body composition, strength and function. Med Sci Sports Exerc 1996; 28 (10): 1321–1326PubMedCrossRef
37.
go back to reference Baker D, Nance S, Moore M. The load that maximizes the average mechanical power output during jump squats in power trained athletes. J Strength Cond Res 2001; 15 (1): 92–97PubMed Baker D, Nance S, Moore M. The load that maximizes the average mechanical power output during jump squats in power trained athletes. J Strength Cond Res 2001; 15 (1): 92–97PubMed
38.
go back to reference Izquierdo M, Hakkinen K, Anton A, et al. Maximal strength and power, endurance performance, and serum hormones in middle-aged and elderly men. Med Sci Sports Exerc 2001; 33 (9): 1577–1587PubMedCrossRef Izquierdo M, Hakkinen K, Anton A, et al. Maximal strength and power, endurance performance, and serum hormones in middle-aged and elderly men. Med Sci Sports Exerc 2001; 33 (9): 1577–1587PubMedCrossRef
39.
go back to reference Izquierdo M, Hakkinen K, Gonzalez-Badillo JJ, et al. Effects of long-term training specificity on maximal strength and power of the upper and lower extremities in athletes from different sports. Eur J Appl Physiol 2002; 87: 264–271PubMedCrossRef Izquierdo M, Hakkinen K, Gonzalez-Badillo JJ, et al. Effects of long-term training specificity on maximal strength and power of the upper and lower extremities in athletes from different sports. Eur J Appl Physiol 2002; 87: 264–271PubMedCrossRef
40.
go back to reference Siegel JA, Gilders RM, Staron RS, et al. Human muscle power output during upper- and lower-body exercises. J Strength Cond Res 2002; 16 (2): 173–178PubMed Siegel JA, Gilders RM, Staron RS, et al. Human muscle power output during upper- and lower-body exercises. J Strength Cond Res 2002; 16 (2): 173–178PubMed
41.
go back to reference Stone M, O’Bryant H, McCoy L, et al. Power and maximum strength relationships during performance of dynamic and static weighted jumps. J Strength Cond Res 2003; 17 (1): 140–147PubMed Stone M, O’Bryant H, McCoy L, et al. Power and maximum strength relationships during performance of dynamic and static weighted jumps. J Strength Cond Res 2003; 17 (1): 140–147PubMed
42.
go back to reference Kawamori N, Haff GG. The optimal training load for the development of muscular power. J Strength Cond Res 2004; 18 (3): 675–684PubMed Kawamori N, Haff GG. The optimal training load for the development of muscular power. J Strength Cond Res 2004; 18 (3): 675–684PubMed
43.
go back to reference Dugan EL, Doyle TLA, Humphries B, et al. Determining the optimal load for jump squats: a review of methods and calculations. J Strength Cond Res 2004; 18 (3): 668–674PubMed Dugan EL, Doyle TLA, Humphries B, et al. Determining the optimal load for jump squats: a review of methods and calculations. J Strength Cond Res 2004; 18 (3): 668–674PubMed
44.
go back to reference Garhammer J. A review of power output studies of Olympic and powerlifting: methodology, performance, prediction, and evaluation tests. J Strength Cond Res 1993; 7 (2): 76–89 Garhammer J. A review of power output studies of Olympic and powerlifting: methodology, performance, prediction, and evaluation tests. J Strength Cond Res 1993; 7 (2): 76–89
45.
go back to reference Schmidtbleicher D. Training for power events. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publications, 1992: 381–395 Schmidtbleicher D. Training for power events. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publications, 1992: 381–395
46.
go back to reference Ritzdorf W. Strength and power training in sport. In: Elliot B, editor. Training in sport. New York: John Wiley and Sons, 1998: 189–237 Ritzdorf W. Strength and power training in sport. In: Elliot B, editor. Training in sport. New York: John Wiley and Sons, 1998: 189–237
47.
go back to reference Behm DG. Neuromuscular implications and applications of resistance training. J Strength Cond Res 1995; 9 (4): 264–274 Behm DG. Neuromuscular implications and applications of resistance training. J Strength Cond Res 1995; 9 (4): 264–274
48.
go back to reference Hakkinen K. Neuromuscular and hormonal adaptations during strength and power training. J Sports Med Phys Fitness 1989; 29 (1): 9–26PubMed Hakkinen K. Neuromuscular and hormonal adaptations during strength and power training. J Sports Med Phys Fitness 1989; 29 (1): 9–26PubMed
49.
go back to reference Komi P. Training of muscle strength and power: Interaction of neuromotoric, hypertrophic, and mechanical factors. Int J Sports Med 1986; 7: 10–15PubMedCrossRef Komi P. Training of muscle strength and power: Interaction of neuromotoric, hypertrophic, and mechanical factors. Int J Sports Med 1986; 7: 10–15PubMedCrossRef
50.
go back to reference Fowles JR, MacDougall JD, Tarnopolsky MA, et al. The effects of acute passive stretch on muscle protein synthesis in humans. Can J Appl Physiol 2000; 25 (3): 165–180PubMedCrossRef Fowles JR, MacDougall JD, Tarnopolsky MA, et al. The effects of acute passive stretch on muscle protein synthesis in humans. Can J Appl Physiol 2000; 25 (3): 165–180PubMedCrossRef
51.
go back to reference Lieber RL, Friden J. Muscle damage is not a function of muscle force but active muscle strain. J Appl Physiol 1993; 74: 520–526PubMed Lieber RL, Friden J. Muscle damage is not a function of muscle force but active muscle strain. J Appl Physiol 1993; 74: 520–526PubMed
52.
go back to reference Kraemer WJ. Endocrine responses to resistance exercise. In: Baechle TR, Earle RW, editors. Essentials of strength training and conditioning. Champaign (IL): Human Kinetics, 2000 Kraemer WJ. Endocrine responses to resistance exercise. In: Baechle TR, Earle RW, editors. Essentials of strength training and conditioning. Champaign (IL): Human Kinetics, 2000
53.
go back to reference Goldspink G. Changes in muscle mass and phenotype and the expression of autocrine and systemic growth factors by muscle in response to stretch and overload. J Anat 1999; 194 (3): 323–334PubMedCrossRef Goldspink G. Changes in muscle mass and phenotype and the expression of autocrine and systemic growth factors by muscle in response to stretch and overload. J Anat 1999; 194 (3): 323–334PubMedCrossRef
54.
go back to reference Viru A. Specific nature of training on skeletal muscle fibres: adaptations in sports training. Washington, DC: CRC Press, 1995: 125–157 Viru A. Specific nature of training on skeletal muscle fibres: adaptations in sports training. Washington, DC: CRC Press, 1995: 125–157
55.
go back to reference Jones DA, Rutherford OM, Parker DF. Physiological changes in skeletal muscle as a result of strength training. Q J Exp Physiol 1989; 74 (3): 233–256PubMed Jones DA, Rutherford OM, Parker DF. Physiological changes in skeletal muscle as a result of strength training. Q J Exp Physiol 1989; 74 (3): 233–256PubMed
56.
go back to reference MacDougall JD. Morphological changes in human skeletal muscle following strength training and immobilization. In: Jones NL, McCartney N, McComas AJ, editors. Human muscle power. Champaign (IL): Human Kinetics, 1986: 269–280 MacDougall JD. Morphological changes in human skeletal muscle following strength training and immobilization. In: Jones NL, McCartney N, McComas AJ, editors. Human muscle power. Champaign (IL): Human Kinetics, 1986: 269–280
57.
go back to reference Kramer JB, Stone MH, O’Bryant HS, et al. Effects of single vs multiple sets of weight training: impact of volume, intensity and variation. J Strength Cond Res 1997; 11 (3): 143–147 Kramer JB, Stone MH, O’Bryant HS, et al. Effects of single vs multiple sets of weight training: impact of volume, intensity and variation. J Strength Cond Res 1997; 11 (3): 143–147
58.
go back to reference Schlumberger A, Schmidtbleicher D, Stec J. Single vs multiple-set strength training in women. J Strength Cond Res 2001; 15 (3): 284–289PubMed Schlumberger A, Schmidtbleicher D, Stec J. Single vs multiple-set strength training in women. J Strength Cond Res 2001; 15 (3): 284–289PubMed
59.
go back to reference Marx JO, Kraemer WJ, Nindl BC, et al. The effect of periodisation and volume of resistance training in women [abstract]. Med Sci Sports Exerc 1998; 30 (5): S935 Marx JO, Kraemer WJ, Nindl BC, et al. The effect of periodisation and volume of resistance training in women [abstract]. Med Sci Sports Exerc 1998; 30 (5): S935
60.
go back to reference Borst S, De Hoyos D, Garzarella L, et al. Effects of resistance training on insulin-like growth factor-1 and IGF binding proteins. Med Sci Sports Exerc 2001; 33: 648–653PubMed Borst S, De Hoyos D, Garzarella L, et al. Effects of resistance training on insulin-like growth factor-1 and IGF binding proteins. Med Sci Sports Exerc 2001; 33: 648–653PubMed
61.
go back to reference Marx JO, Ratamess NA, Nindl BC, et al. Low-volume circuit versus high-volume periodized resistance training in women. Med Sci Sports Exerc 2001; 33: 635–643PubMedCrossRef Marx JO, Ratamess NA, Nindl BC, et al. Low-volume circuit versus high-volume periodized resistance training in women. Med Sci Sports Exerc 2001; 33: 635–643PubMedCrossRef
62.
go back to reference Mulligan SE, Reck S J, Gordon SE et al. Influence of resistance exercise volume on serum growth hormone and Cortisol concentrations in women. J Strength Cond Res 1996; 10 (4): 256–262 Mulligan SE, Reck S J, Gordon SE et al. Influence of resistance exercise volume on serum growth hormone and Cortisol concentrations in women. J Strength Cond Res 1996; 10 (4): 256–262
63.
go back to reference Kraemer WJ, Gordon SE, Heck SJ, et al. Endogenous anabolic hormonal and growth factor responses to heavy resistance exercise in males and females. Int J Sports Med 1991; 12 (2): 228–235PubMedCrossRef Kraemer WJ, Gordon SE, Heck SJ, et al. Endogenous anabolic hormonal and growth factor responses to heavy resistance exercise in males and females. Int J Sports Med 1991; 12 (2): 228–235PubMedCrossRef
64.
go back to reference Kraemer WJ, Marchitelli LJ, Gordon SE et al. Hormonal and growth factor responses to heavy resistance exercise protocols. J Appl Physiol 1990; 69: 1442–1450PubMed Kraemer WJ, Marchitelli LJ, Gordon SE et al. Hormonal and growth factor responses to heavy resistance exercise protocols. J Appl Physiol 1990; 69: 1442–1450PubMed
65.
go back to reference Kraemer WJ, Heck SJ, Dziados JE, et al. Changes in hormonal concentrations after different heavy-resistance exercise protocols in women. J Appl Physiol 1993; 75: 594–604PubMed Kraemer WJ, Heck SJ, Dziados JE, et al. Changes in hormonal concentrations after different heavy-resistance exercise protocols in women. J Appl Physiol 1993; 75: 594–604PubMed
66.
go back to reference Jones AD. Strength of skeletal muscle and the effects of training. Br Med Bull 1992; 48 (3): 592–604PubMed Jones AD. Strength of skeletal muscle and the effects of training. Br Med Bull 1992; 48 (3): 592–604PubMed
67.
go back to reference Heck SJ, Kraemer WJ. Designing resistance training programs. 2nd ed. Champaign (IL): Human Kinetics, 1997 Heck SJ, Kraemer WJ. Designing resistance training programs. 2nd ed. Champaign (IL): Human Kinetics, 1997
68.
go back to reference Young BW, Bilby EG. The effect of voluntary effort to influence speed of contraction on strength, muscular power, and hypertrophy development. J Strength Cond Res 1993; 7 (3): 172–178 Young BW, Bilby EG. The effect of voluntary effort to influence speed of contraction on strength, muscular power, and hypertrophy development. J Strength Cond Res 1993; 7 (3): 172–178
69.
go back to reference Newton R, Kraemer W. Developing explosive muscular power: implications for a mixed methods training strategy. Strength Cond J 1994; 6: 36–41 Newton R, Kraemer W. Developing explosive muscular power: implications for a mixed methods training strategy. Strength Cond J 1994; 6: 36–41
70.
go back to reference Zehr PE, Sale DG. Ballistic movement: muscle activation and neuromuscular adaptation. Can J Appl Physiol 1994; 19 (4): 363–378PubMedCrossRef Zehr PE, Sale DG. Ballistic movement: muscle activation and neuromuscular adaptation. Can J Appl Physiol 1994; 19 (4): 363–378PubMedCrossRef
71.
go back to reference Duchateau J, Hainaut K. Mechanisms of muscle and motor unit adaptations to explosive power training. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publishing, 2003 Duchateau J, Hainaut K. Mechanisms of muscle and motor unit adaptations to explosive power training. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publishing, 2003
72.
73.
go back to reference Wilson GJ, Newton RU, Murphy AJ, et al. The optimal training load for the development of dynamic athletic performance. Med Sci Sports Exerc 1993; 25 (11): 1279–1286PubMed Wilson GJ, Newton RU, Murphy AJ, et al. The optimal training load for the development of dynamic athletic performance. Med Sci Sports Exerc 1993; 25 (11): 1279–1286PubMed
74.
go back to reference Edman KAP. Contractile performance of skeletal muscle fibres. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publications, 1992: 96–114 Edman KAP. Contractile performance of skeletal muscle fibres. In: Komi PV, editor. Strength and power in sport. Boston (MA): Blackwell Scientific Publications, 1992: 96–114
75.
go back to reference Dudley G, Tesch P, Harris RT, et al. Influence of eccentric actions on the metabolic cost of resistance exercise. Aviat Space Environ Med 1991; 62 (7): 678–682PubMed Dudley G, Tesch P, Harris RT, et al. Influence of eccentric actions on the metabolic cost of resistance exercise. Aviat Space Environ Med 1991; 62 (7): 678–682PubMed
76.
go back to reference Carey Smith R, Rutherford OM. The role of metabolites in strength training. Eur J Appl Physiol 1995; 71: 332–336CrossRef Carey Smith R, Rutherford OM. The role of metabolites in strength training. Eur J Appl Physiol 1995; 71: 332–336CrossRef
77.
go back to reference Deschenes MR, Kraemer WJ. Performance and physiological adaptations to resistance training. Am J Phys Med Rehab 2002; 81 (11): S3–S16CrossRef Deschenes MR, Kraemer WJ. Performance and physiological adaptations to resistance training. Am J Phys Med Rehab 2002; 81 (11): S3–S16CrossRef
78.
go back to reference Nosaka K, Newton M. Difference in the magnitude of muscle damage between maximal and sub maximal eccentric loading. J Strength Cond Res 2002; 16 (2): 202–208PubMed Nosaka K, Newton M. Difference in the magnitude of muscle damage between maximal and sub maximal eccentric loading. J Strength Cond Res 2002; 16 (2): 202–208PubMed
79.
go back to reference Jamurtas AZ, Fatouros IG, Buckenmeyer P, et al. Effects of plyometric exercise on muscle soreness and plasma creatine kinase levels and its comparison with eccentric and concentric exercise. J Strength Cond Res 2000; 14 (1): 68–74 Jamurtas AZ, Fatouros IG, Buckenmeyer P, et al. Effects of plyometric exercise on muscle soreness and plasma creatine kinase levels and its comparison with eccentric and concentric exercise. J Strength Cond Res 2000; 14 (1): 68–74
80.
go back to reference Jones DA, Rutherford OM. Human muscle strength training: the effects of three different regimes and the nature of the resultant changes. J Physiol 1987; 391: 1–11PubMed Jones DA, Rutherford OM. Human muscle strength training: the effects of three different regimes and the nature of the resultant changes. J Physiol 1987; 391: 1–11PubMed
81.
go back to reference Marler TA, Motl RW, Johnson SC, et al. Effects of concentric and eccentric hamstring strength training on 1-RM values in healthy adult males [abstract]. Med Sci Sports Exerc 1999; 31 (5): S1094 Marler TA, Motl RW, Johnson SC, et al. Effects of concentric and eccentric hamstring strength training on 1-RM values in healthy adult males [abstract]. Med Sci Sports Exerc 1999; 31 (5): S1094
82.
go back to reference Mayhew TP, Rothstein JM, Finucane SD, et al. Muscular adaptation to concentric and eccentric exercise at equal power levels. Med Sci Sports Exerc 1995; 27 (6): 868–873PubMed Mayhew TP, Rothstein JM, Finucane SD, et al. Muscular adaptation to concentric and eccentric exercise at equal power levels. Med Sci Sports Exerc 1995; 27 (6): 868–873PubMed
83.
go back to reference Durand RJ, Castracane VD, Hollander DB, et al. Hormonal responses from concentric and eccentric muscle contractions. Med Sci Sports Exerc 2003; 35 (6): 937–943PubMedCrossRef Durand RJ, Castracane VD, Hollander DB, et al. Hormonal responses from concentric and eccentric muscle contractions. Med Sci Sports Exerc 2003; 35 (6): 937–943PubMedCrossRef
84.
go back to reference Hortobagyi T, Barrier J, Beard D, et al. Greater initial adaptations to submaximal muscle lengthening than maximal shortening. J Appl Physiol 1996; 81 (4): 1677–1682PubMed Hortobagyi T, Barrier J, Beard D, et al. Greater initial adaptations to submaximal muscle lengthening than maximal shortening. J Appl Physiol 1996; 81 (4): 1677–1682PubMed
85.
go back to reference Seger JY, Arvidsson B, Thorstensson A. Specific effects of eccentric and concentric training on muscle strength and morphology in humans. Eur J Appl Physiol 1998; 79: 49–57CrossRef Seger JY, Arvidsson B, Thorstensson A. Specific effects of eccentric and concentric training on muscle strength and morphology in humans. Eur J Appl Physiol 1998; 79: 49–57CrossRef
86.
go back to reference Asmussen E, Bonde-Petersen F. Apparent efficiency and storage of elastic energy in human muscles during exercise. Acta Physiol Scand 1974; 92: 537–545PubMedCrossRef Asmussen E, Bonde-Petersen F. Apparent efficiency and storage of elastic energy in human muscles during exercise. Acta Physiol Scand 1974; 92: 537–545PubMedCrossRef
87.
go back to reference Komi PV, Bosco C. Utilisation of stored elastic energy in leg extensor muscles by men and women. Med Sci Sports Exerc 1978; 10 (4): 261–265 Komi PV, Bosco C. Utilisation of stored elastic energy in leg extensor muscles by men and women. Med Sci Sports Exerc 1978; 10 (4): 261–265
88.
go back to reference Dietz G, Noth J, Schmidtbleicher D. Interaction between preactivity and stretch reflex in human triceps brachii during landing from forward falls. J Physiol 1981; 311: 113–125PubMed Dietz G, Noth J, Schmidtbleicher D. Interaction between preactivity and stretch reflex in human triceps brachii during landing from forward falls. J Physiol 1981; 311: 113–125PubMed
89.
go back to reference Melville-Jones G, Watt DGD. Muscular control of landing from unexpected falls. J Physiol 1971; 219: 729–737 Melville-Jones G, Watt DGD. Muscular control of landing from unexpected falls. J Physiol 1971; 219: 729–737
90.
go back to reference Van Ingen Schenau GJ. An alternative view of the concept of elastic energy in human movements. Hum Move Stud 1984; 3: 301–336CrossRef Van Ingen Schenau GJ. An alternative view of the concept of elastic energy in human movements. Hum Move Stud 1984; 3: 301–336CrossRef
91.
go back to reference Newton R, Wilson G. The kinetics and kinematics of powerful upper body movements: the effect of load. In XlVth International Series on Biomechanics; 1993 Jul 4–8; Paris, 936–937 Newton R, Wilson G. The kinetics and kinematics of powerful upper body movements: the effect of load. In XlVth International Series on Biomechanics; 1993 Jul 4–8; Paris, 936–937
92.
go back to reference Keogh J, Wilson G, Weatherby R. A cross-sectional comparison of different resistance training techniques in the bench press. J Strength Cond Res 1999; 13 (3): 247–258 Keogh J, Wilson G, Weatherby R. A cross-sectional comparison of different resistance training techniques in the bench press. J Strength Cond Res 1999; 13 (3): 247–258
93.
go back to reference Kraemer WJ, Dziados JE, Marchitelli LJ, et al. Effects of different heavy-resistance exercise protocols on plasma beta-endorphin concentrations. J Appl Physiol 1993; 74: 450–459PubMed Kraemer WJ, Dziados JE, Marchitelli LJ, et al. Effects of different heavy-resistance exercise protocols on plasma beta-endorphin concentrations. J Appl Physiol 1993; 74: 450–459PubMed
94.
go back to reference Lambert CP, Flynn MG. Fatigue during high-intensity intermittent exercise: application to bodybuilding. Sports Med 2002; 32 (8): 511–522PubMedCrossRef Lambert CP, Flynn MG. Fatigue during high-intensity intermittent exercise: application to bodybuilding. Sports Med 2002; 32 (8): 511–522PubMedCrossRef
95.
go back to reference Tan B. Manipulating resistance training program variables to optimize maximum strength in men: a review. J Strength Cond Res 1999; 13 (3): 289–304CrossRef Tan B. Manipulating resistance training program variables to optimize maximum strength in men: a review. J Strength Cond Res 1999; 13 (3): 289–304CrossRef
96.
97.
go back to reference Kraemer W. Influence of the endocrine system on resistance training adaptations. Nat Strength Cond Assoc J 1992; 14 (2): 47–54CrossRef Kraemer W. Influence of the endocrine system on resistance training adaptations. Nat Strength Cond Assoc J 1992; 14 (2): 47–54CrossRef
98.
go back to reference Weiss LW, Relyea GE. Multiple-joint velocity-spectrum strength/power development consequent to repetition manipulation. J Sports Med Phys Fitness 2001; 41 (1): 39–45PubMed Weiss LW, Relyea GE. Multiple-joint velocity-spectrum strength/power development consequent to repetition manipulation. J Sports Med Phys Fitness 2001; 41 (1): 39–45PubMed
99.
go back to reference Wenzel RR, Perfetto EM. The effect of speed versus non-speed training in power development. J Appl Sport Sci Res 1992; 6 (2): 82–87 Wenzel RR, Perfetto EM. The effect of speed versus non-speed training in power development. J Appl Sport Sci Res 1992; 6 (2): 82–87
100.
go back to reference Weiss LW, Coney HD, Clark FC. Differential functional adaptations to short-term low-, moderate-, and high-repetition weight training. J Strength Cond Res 1999; 13 (3): 236–241 Weiss LW, Coney HD, Clark FC. Differential functional adaptations to short-term low-, moderate-, and high-repetition weight training. J Strength Cond Res 1999; 13 (3): 236–241
101.
go back to reference Bauer T, Thayer ER, Baras G. Comparison of training modalities for power development in the lower extremity. J Appl Sport Sci Res 1990; 4 (4): 115–121 Bauer T, Thayer ER, Baras G. Comparison of training modalities for power development in the lower extremity. J Appl Sport Sci Res 1990; 4 (4): 115–121
102.
go back to reference Taaffe DR, Pruitt L, Pyka G, et al. Comparative effects of high-and low-intensity resistance training on thigh muscle strength, fiber area, and tissue composition in elderly women. Clin Physiol 1996; 16: 381–392PubMedCrossRef Taaffe DR, Pruitt L, Pyka G, et al. Comparative effects of high-and low-intensity resistance training on thigh muscle strength, fiber area, and tissue composition in elderly women. Clin Physiol 1996; 16: 381–392PubMedCrossRef
103.
go back to reference Chestnut JL, Docherty D. The effects of 4 and 10 repetition maximum weight-training protocols on neuromuscular adaptations in untrained men. J Strength Cond Res 1999; 13 (4): 353–359 Chestnut JL, Docherty D. The effects of 4 and 10 repetition maximum weight-training protocols on neuromuscular adaptations in untrained men. J Strength Cond Res 1999; 13 (4): 353–359
104.
go back to reference Stone WJ, Coulter S. Strength/endurance effects from three resistance training protocols with women. J Strength Cond Res 1994; 8 (4): 231–234 Stone WJ, Coulter S. Strength/endurance effects from three resistance training protocols with women. J Strength Cond Res 1994; 8 (4): 231–234
105.
go back to reference Jones K, Bishop P, Hunter G, et al. The effects of varying resistance-training loads on intermediate- and high-velocity-specific adaptations. J Strength Cond Res 2001; 15 (3): 349–356PubMed Jones K, Bishop P, Hunter G, et al. The effects of varying resistance-training loads on intermediate- and high-velocity-specific adaptations. J Strength Cond Res 2001; 15 (3): 349–356PubMed
106.
go back to reference Behm D, Sale D. Intended rather than actual movement velocity determines velocity-specific training response. J Appl Physiol 1993; 74 (1): 359–368PubMedCrossRef Behm D, Sale D. Intended rather than actual movement velocity determines velocity-specific training response. J Appl Physiol 1993; 74 (1): 359–368PubMedCrossRef
107.
go back to reference Young W. A comparison of power development methods. Track Tech 1989; 109: 3484–3486 Young W. A comparison of power development methods. Track Tech 1989; 109: 3484–3486
108.
go back to reference Lyttle A. Maximising power development: a summary of training methods. Strength Cond Coach 1994; 2 (3): 16–19 Lyttle A. Maximising power development: a summary of training methods. Strength Cond Coach 1994; 2 (3): 16–19
109.
go back to reference Ebben WP. A review of combined weight training and plyometric training modes: complex training. Strength Cond J 1998 Oct; 20: 18–27CrossRef Ebben WP. A review of combined weight training and plyometric training modes: complex training. Strength Cond J 1998 Oct; 20: 18–27CrossRef
110.
go back to reference Young W. Training for speed/strength: heavy vs light loads. Nat Strength Cond Assoc J 1993; 15 (5): 34–42CrossRef Young W. Training for speed/strength: heavy vs light loads. Nat Strength Cond Assoc J 1993; 15 (5): 34–42CrossRef
Metadata
Title
Possible Stimuli for Strength and Power Adaptation
Acute Mechanical Responses
Authors
Blair Crewther
John Cronin
Justin Keogh
Publication date
01-11-2005
Publisher
Springer International Publishing
Published in
Sports Medicine / Issue 11/2005
Print ISSN: 0112-1642
Electronic ISSN: 1179-2035
DOI
https://doi.org/10.2165/00007256-200535110-00004

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