Skip to main content
Erschienen in: European Journal of Applied Physiology 12/2011

01.12.2011 | Original Article

Strength and neuromuscular adaptation following one, four, and eight sets of high intensity resistance exercise in trained males

verfasst von: P. W. M. Marshall, M. McEwen, D. W. Robbins

Erschienen in: European Journal of Applied Physiology | Ausgabe 12/2011

Einloggen, um Zugang zu erhalten

Abstract

The optimal volume of resistance exercise to prescribe for trained individuals is unclear. The purpose of this study was to randomly assign resistance trained individuals to 6-weeks of squat exercise, prescribed at 80% of a 1 repetition-maximum (1-RM), using either one, four, or eight sets of repetitions to failure performed twice per week. Participants then performed the same peaking program for 4-weeks. Squat 1-RM, quadriceps muscle activation, and contractile rate of force development (RFD) were measured before, during, and after the training program. 32 resistance-trained male participants completed the 10-week program. Squat 1-RM was significantly increased for all groups after 6 and 10-weeks of training (P < 0.05). The 8-set group was significantly stronger than the 1-set group after 3-weeks of training (7.9% difference, P < 0.05), and remained stronger after 6 and 10-weeks of training (P < 0.05). Peak muscle activation did not change during the study. Early (30, 50 ms) and peak RFD was significantly decreased for all groups after 6 and 10-weeks of training (P < 0.05). Peak isometric force output did not change for any group. The results of this study support resistance exercise prescription in excess of 4-sets (i.e. 8-sets) for faster and greater strength gains as compared to 1-set training. Common neuromuscular changes are attributed to high intensity squats (80% 1-RM) combined with a repetition to failure prescription. This prescription may not be useful for sports application owing to decreased early and peak RFD. Individual responsiveness to 1-set of training should be evaluated in the first 3-weeks of training.
Literatur
Zurück zum Zitat Aagaard P, Simonsen E, Andersen J, Magnusson P, Dyhre-Poulsen P (2002) Increased rate of force development and neural drive of human skeletal muscle following resistance training. J Appl Physiol 93:1318–1326PubMed Aagaard P, Simonsen E, Andersen J, Magnusson P, Dyhre-Poulsen P (2002) Increased rate of force development and neural drive of human skeletal muscle following resistance training. J Appl Physiol 93:1318–1326PubMed
Zurück zum Zitat Andersen L, Aagaard P (2006) Influence of maximal muscle strength and intrinsic muscle contractile properties on contractile rate of force development. Eur J Appl Physiol 96:46–52PubMedCrossRef Andersen L, Aagaard P (2006) Influence of maximal muscle strength and intrinsic muscle contractile properties on contractile rate of force development. Eur J Appl Physiol 96:46–52PubMedCrossRef
Zurück zum Zitat Andersen L, Andersen J, Zebis M, Aagaard P (2010) Early and late rate of force development: Differential adaptive responses to resistance training. Scand J Med Sci Sports 20(1):e162–e169PubMedCrossRef Andersen L, Andersen J, Zebis M, Aagaard P (2010) Early and late rate of force development: Differential adaptive responses to resistance training. Scand J Med Sci Sports 20(1):e162–e169PubMedCrossRef
Zurück zum Zitat Barry B, Warman G, RG C (2005) Age-related differences in rapid muscle activation after rate of force development training of the elbow flexors. Exp Brain Res 162:122–132PubMedCrossRef Barry B, Warman G, RG C (2005) Age-related differences in rapid muscle activation after rate of force development training of the elbow flexors. Exp Brain Res 162:122–132PubMedCrossRef
Zurück zum Zitat Blazevich A, Horne S, Cannavan D, Coleman D, Aagaard P (2008) Effect of contraction mode of slow-speed resistance training on the maximum rate of force development in the human quadriceps. Muscle Nerve 38:1133–1146PubMedCrossRef Blazevich A, Horne S, Cannavan D, Coleman D, Aagaard P (2008) Effect of contraction mode of slow-speed resistance training on the maximum rate of force development in the human quadriceps. Muscle Nerve 38:1133–1146PubMedCrossRef
Zurück zum Zitat Blazevich AJ, Cannavan D, Horne S, Coleman D, Aagaard P (2009) Changes in muscle force-length properties affect the early rise of force in vivo. Muscle Nerve 39:512–520PubMedCrossRef Blazevich AJ, Cannavan D, Horne S, Coleman D, Aagaard P (2009) Changes in muscle force-length properties affect the early rise of force in vivo. Muscle Nerve 39:512–520PubMedCrossRef
Zurück zum Zitat Burd NA, Holwerda AM, Selby KC, West DWD, Staples AW, Cain NE, Cashaback JGA, Potvin JR, Baker SK, Phillips SM (2010) Resistance exercise volume affects myofibrillar protein synthesis and anabolic signalling molecule phosphorylation in young men. J Physiol 588(16):3119–3130PubMedCrossRef Burd NA, Holwerda AM, Selby KC, West DWD, Staples AW, Cain NE, Cashaback JGA, Potvin JR, Baker SK, Phillips SM (2010) Resistance exercise volume affects myofibrillar protein synthesis and anabolic signalling molecule phosphorylation in young men. J Physiol 588(16):3119–3130PubMedCrossRef
Zurück zum Zitat Cannon R, Cafarelli E (1997) Neuromuscular adaptations to training. J Appl Physiol 63:2396–2402 Cannon R, Cafarelli E (1997) Neuromuscular adaptations to training. J Appl Physiol 63:2396–2402
Zurück zum Zitat Carpinelli R, Otto R, Winett R (2004) A critical analysis of the acsm position stand on resistance training: Insufficient evidence to support recommended training protocols. JEP Online 7(3):1–64 Carpinelli R, Otto R, Winett R (2004) A critical analysis of the acsm position stand on resistance training: Insufficient evidence to support recommended training protocols. JEP Online 7(3):1–64
Zurück zum Zitat Carroll TJ, Riek S, Carson RG (2002) The sites of neural adaptation induced by resistance training in humans. J Physiol 544(2):641–652PubMedCrossRef Carroll TJ, Riek S, Carson RG (2002) The sites of neural adaptation induced by resistance training in humans. J Physiol 544(2):641–652PubMedCrossRef
Zurück zum Zitat Carroll TJ, Barton J, Hsu M, Lee M (2009) The effect of strength training on the force of twitches evoked by corticospinal stimulation in humans. Acta Physiol 197(2):161–173CrossRef Carroll TJ, Barton J, Hsu M, Lee M (2009) The effect of strength training on the force of twitches evoked by corticospinal stimulation in humans. Acta Physiol 197(2):161–173CrossRef
Zurück zum Zitat Chiu L, Fry A, Schilling B, Johnson E, Weiss L (2004) Neuromuscular fatigue and potentiation following two successive high intensity resistance exercise sessions. Eur J Appl Physiol 92:385–392PubMedCrossRef Chiu L, Fry A, Schilling B, Johnson E, Weiss L (2004) Neuromuscular fatigue and potentiation following two successive high intensity resistance exercise sessions. Eur J Appl Physiol 92:385–392PubMedCrossRef
Zurück zum Zitat Davidsen P, Gallagher I, Hartman J, Tarnopolsky M, Dela F, Helge J, Timmons J, Phillips S (2011) High responders to resistance exercise training demonstrate differential regulation of skeletal muscle microrna expression. J Appl Physiol 110:309–317PubMedCrossRef Davidsen P, Gallagher I, Hartman J, Tarnopolsky M, Dela F, Helge J, Timmons J, Phillips S (2011) High responders to resistance exercise training demonstrate differential regulation of skeletal muscle microrna expression. J Appl Physiol 110:309–317PubMedCrossRef
Zurück zum Zitat de Ruiter C, Kooistra R, Paalman M, de Haan A (2004) Initial phase of maximal voluntary and electrically stimulated knee extension torque development at different knee angles. J Appl Physiol 97:1693–1701PubMedCrossRef de Ruiter C, Kooistra R, Paalman M, de Haan A (2004) Initial phase of maximal voluntary and electrically stimulated knee extension torque development at different knee angles. J Appl Physiol 97:1693–1701PubMedCrossRef
Zurück zum Zitat Edwards RHT, Hill DK, Jones DA, Merton PA (1977) Fatigue of long duration in human skeletal muscle after exercise. J Physiol 272:769–778PubMed Edwards RHT, Hill DK, Jones DA, Merton PA (1977) Fatigue of long duration in human skeletal muscle after exercise. J Physiol 272:769–778PubMed
Zurück zum Zitat Faul F, Erdfelder E, Lang A-G, Buchner A (2007) G*power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Meth 39:175–191CrossRef Faul F, Erdfelder E, Lang A-G, Buchner A (2007) G*power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Meth 39:175–191CrossRef
Zurück zum Zitat Fleck S (1999) Periodized strength training: a critical review. J Strength Cond Res 13:82–89 Fleck S (1999) Periodized strength training: a critical review. J Strength Cond Res 13:82–89
Zurück zum Zitat Fry A (2004) The role of resistance exercise intensity of muscle fibre adaptations. Sports Med 34(10):663–679PubMedCrossRef Fry A (2004) The role of resistance exercise intensity of muscle fibre adaptations. Sports Med 34(10):663–679PubMedCrossRef
Zurück zum Zitat Fry AC, Kraemer WJ (1997) Resistance exercise overtraining and overreaching: neuroendocrine responses. Sports Med 23(2):106–129PubMedCrossRef Fry AC, Kraemer WJ (1997) Resistance exercise overtraining and overreaching: neuroendocrine responses. Sports Med 23(2):106–129PubMedCrossRef
Zurück zum Zitat Garfinkel S, Cafarelli E (1992) Relative changes in maximal force, EMG, and muscle cross-sectional area after isometric training. Med Sci Sports Exerc 24:1220–1227PubMed Garfinkel S, Cafarelli E (1992) Relative changes in maximal force, EMG, and muscle cross-sectional area after isometric training. Med Sci Sports Exerc 24:1220–1227PubMed
Zurück zum Zitat Gonzalez-Badillo J, Izquierdo M, Gorostiaga E (2006) Moderate volume of high relative training intensity produces greater strength gains compared with low and high volumes in competitive weightlifters. J Strength Cond Res 20(1):73–81PubMed Gonzalez-Badillo J, Izquierdo M, Gorostiaga E (2006) Moderate volume of high relative training intensity produces greater strength gains compared with low and high volumes in competitive weightlifters. J Strength Cond Res 20(1):73–81PubMed
Zurück zum Zitat González-Badillo JJ, Gorostiaga EM, Arellano R, Izquierdo M (2005) Moderate resistance training volume produces more favorable strength gains than high or low volumes during a short-term training cycle. J Strength Cond Res 19(3):689–697PubMed González-Badillo JJ, Gorostiaga EM, Arellano R, Izquierdo M (2005) Moderate resistance training volume produces more favorable strength gains than high or low volumes during a short-term training cycle. J Strength Cond Res 19(3):689–697PubMed
Zurück zum Zitat Gordon A, Homsher E, Regnier M (2000) Regulation of contraction in striated muscle. Physiol Rev 80:853–924PubMed Gordon A, Homsher E, Regnier M (2000) Regulation of contraction in striated muscle. Physiol Rev 80:853–924PubMed
Zurück zum Zitat Hakkinen K, Alen M, Komi P (1985) Changes in isometric force and relaxation-time, electromyography and muscle fibre characteristics of human skeletal muscle during strength training and detraining. Acta Physiol Scand 125:573–585PubMedCrossRef Hakkinen K, Alen M, Komi P (1985) Changes in isometric force and relaxation-time, electromyography and muscle fibre characteristics of human skeletal muscle during strength training and detraining. Acta Physiol Scand 125:573–585PubMedCrossRef
Zurück zum Zitat Hakkinen K, Pakarinen A, Alen M, Kauhanen H, Komi PV (1988) Neuromuscular and hormonal adaptations in athletes to strength training in two years. J Appl Physiol 65(6):2406–2412PubMed Hakkinen K, Pakarinen A, Alen M, Kauhanen H, Komi PV (1988) Neuromuscular and hormonal adaptations in athletes to strength training in two years. J Appl Physiol 65(6):2406–2412PubMed
Zurück zum Zitat Harridge S (2007) Plasticity of human skeletal muscle: gene expression to in vivo function. Exp Physiol 92:783–797PubMedCrossRef Harridge S (2007) Plasticity of human skeletal muscle: gene expression to in vivo function. Exp Physiol 92:783–797PubMedCrossRef
Zurück zum Zitat Hass CJ, Garzarella L, De Hoyos D, Pollock ML (2000) Single versus multiple sets in long-term recreational weightlifters. Med Sci Sports Exerc 32(1):235–242PubMedCrossRef Hass CJ, Garzarella L, De Hoyos D, Pollock ML (2000) Single versus multiple sets in long-term recreational weightlifters. Med Sci Sports Exerc 32(1):235–242PubMedCrossRef
Zurück zum Zitat Hudson MB, Hosick PA, McCaulley GO, Schrieber L, Wrieden J, McAnulty SR, Triplett NT, McBride JM, Quindry JC (2008) The effect of resistance exercise on humoral markers of oxidative stress. Med Sci Sports Exerc 40(3):542–548PubMedCrossRef Hudson MB, Hosick PA, McCaulley GO, Schrieber L, Wrieden J, McAnulty SR, Triplett NT, McBride JM, Quindry JC (2008) The effect of resistance exercise on humoral markers of oxidative stress. Med Sci Sports Exerc 40(3):542–548PubMedCrossRef
Zurück zum Zitat Humburg H, Baars H, Schröder J, Reer R, Braumann KM (2007) 1-set vs. 3-set resistance training: a crossover study. J Strength Cond Res 21(2):578–582PubMed Humburg H, Baars H, Schröder J, Reer R, Braumann KM (2007) 1-set vs. 3-set resistance training: a crossover study. J Strength Cond Res 21(2):578–582PubMed
Zurück zum Zitat Izquierdo M, Ibañez J, Gonzalez-Badillo J, Hakkinen K, Ratamess N, Kraemer WJ, French DN, Eslava J, Altadill A, Asiain X, Gorostiaga EM (2006) Differential effects of strength training leading to failure versus not to failure on hormonal responses, strength, and muscle power gains. J Appl Phys 100:1647–1656CrossRef Izquierdo M, Ibañez J, Gonzalez-Badillo J, Hakkinen K, Ratamess N, Kraemer WJ, French DN, Eslava J, Altadill A, Asiain X, Gorostiaga EM (2006) Differential effects of strength training leading to failure versus not to failure on hormonal responses, strength, and muscle power gains. J Appl Phys 100:1647–1656CrossRef
Zurück zum Zitat Jackson A, Pollock M (1978) Generalized equations for predicting body density. Br J Nutr 40:497–504PubMedCrossRef Jackson A, Pollock M (1978) Generalized equations for predicting body density. Br J Nutr 40:497–504PubMedCrossRef
Zurück zum Zitat Jensen J, Nielson JB, Marstrand PN (2005) Motor skill training and strength training are associated with different plastic changes in the central nervous system. J Appl Physiol 99(4):1558–1568PubMedCrossRef Jensen J, Nielson JB, Marstrand PN (2005) Motor skill training and strength training are associated with different plastic changes in the central nervous system. J Appl Physiol 99(4):1558–1568PubMedCrossRef
Zurück zum Zitat Kraemer WJ (1997) A series of studies—the physiological basis for strength training in American football: Fact over philosophy. J Strength Cond Res 11(3):131–142 Kraemer WJ (1997) A series of studies—the physiological basis for strength training in American football: Fact over philosophy. J Strength Cond Res 11(3):131–142
Zurück zum Zitat Kraemer WJ, Ratamess N, Fry AC, Triplett-McBride T, Koziris LP, Bauer JA, Lynch JM, Fleck SJ (2000) Influence of resistance training volume and periodization on physiological and performance adaptations in collegiate women tennis players. Am J Sports Med 28(5):626–633PubMed Kraemer WJ, Ratamess N, Fry AC, Triplett-McBride T, Koziris LP, Bauer JA, Lynch JM, Fleck SJ (2000) Influence of resistance training volume and periodization on physiological and performance adaptations in collegiate women tennis players. Am J Sports Med 28(5):626–633PubMed
Zurück zum Zitat Kramer JB, Stone MH, O’Bryant HS, Conley MS, Johnson RL, Nieman DC, Honeycutt DR, Hoke TP (1997) Effects of single vs. multiple sets of weight training: impact of volume, intensity, and variation. J Strength Cond Res 11(3):143–147 Kramer JB, Stone MH, O’Bryant HS, Conley MS, Johnson RL, Nieman DC, Honeycutt DR, Hoke TP (1997) Effects of single vs. multiple sets of weight training: impact of volume, intensity, and variation. J Strength Cond Res 11(3):143–147
Zurück zum Zitat Krieger JW (2009) Single versus multiple sets of resistance exercise: A meta-regression. J Strength Cond Res 23(6):1890–1901PubMedCrossRef Krieger JW (2009) Single versus multiple sets of resistance exercise: A meta-regression. J Strength Cond Res 23(6):1890–1901PubMedCrossRef
Zurück zum Zitat Marx JO, Ratamess NA, Nindl BC, Gotshalk LA, Volek JS, Dohi K, Bush JA, Gómez AL, Mazzetti SA, Fleck SJ, Häkkinen K, Newton RU, Kraemer WJ (2001) Low-volume circuit versus high-volume periodized resistance training in women. Med Sci Sports Exerc 33(4):635–643PubMed Marx JO, Ratamess NA, Nindl BC, Gotshalk LA, Volek JS, Dohi K, Bush JA, Gómez AL, Mazzetti SA, Fleck SJ, Häkkinen K, Newton RU, Kraemer WJ (2001) Low-volume circuit versus high-volume periodized resistance training in women. Med Sci Sports Exerc 33(4):635–643PubMed
Zurück zum Zitat McBride JM, Blaak JB, Triplett-McBride T (2003) Effect of resistance exercise volume and complexity on emg, strength, and regional body composition. Eur J Appl Physiol 90(5–6):626–632PubMedCrossRef McBride JM, Blaak JB, Triplett-McBride T (2003) Effect of resistance exercise volume and complexity on emg, strength, and regional body composition. Eur J Appl Physiol 90(5–6):626–632PubMedCrossRef
Zurück zum Zitat McCarthy J, Pozniak M, Agre J (2002) Neuromuscular adaptations to concurrent strength and endurance training. Med Sci Sports Exerc 34(3):511–519PubMedCrossRef McCarthy J, Pozniak M, Agre J (2002) Neuromuscular adaptations to concurrent strength and endurance training. Med Sci Sports Exerc 34(3):511–519PubMedCrossRef
Zurück zum Zitat McCaulley GO, McBride JM, Cormie P, Hudson MB, Nuzzo JL, Quindry JC, Travis Triplett N (2009) Acute hormonal and neuromuscular responses to hypertrophy, strength and power type resistance exercise. Eur J Appl Physiol 105(5):695–704PubMedCrossRef McCaulley GO, McBride JM, Cormie P, Hudson MB, Nuzzo JL, Quindry JC, Travis Triplett N (2009) Acute hormonal and neuromuscular responses to hypertrophy, strength and power type resistance exercise. Eur J Appl Physiol 105(5):695–704PubMedCrossRef
Zurück zum Zitat Moritani T, DeVries HA (1979) Neural factors versus hypertrophy in the time course of muscle strength gain. Am J Phys Med 58(3):115–130PubMed Moritani T, DeVries HA (1979) Neural factors versus hypertrophy in the time course of muscle strength gain. Am J Phys Med 58(3):115–130PubMed
Zurück zum Zitat Munn J, Herbert RD, Hancock MJ, Gandevia SC (2005) Resistance training for strength: effect of number of sets and contraction speed. Med Sci Sports Exerc 37(9):1622–1626PubMedCrossRef Munn J, Herbert RD, Hancock MJ, Gandevia SC (2005) Resistance training for strength: effect of number of sets and contraction speed. Med Sci Sports Exerc 37(9):1622–1626PubMedCrossRef
Zurück zum Zitat Ostrowski KJ, Wilson GJ, Weatherby R, Murphy PW, Lyttle AD (1997) The effect of weight training volume on hormonal output and muscular size and function. J Strength Cond Res 11(3):148–154 Ostrowski KJ, Wilson GJ, Weatherby R, Murphy PW, Lyttle AD (1997) The effect of weight training volume on hormonal output and muscular size and function. J Strength Cond Res 11(3):148–154
Zurück zum Zitat Otto RM, Carpinelli RN (2006) A critical analysis of the single versus multiple set debate. JEPonline 9(1):32–57 Otto RM, Carpinelli RN (2006) A critical analysis of the single versus multiple set debate. JEPonline 9(1):32–57
Zurück zum Zitat Peterson MD, Rhea MR, Alvar BA (2004) Maximizing strength development in athletes: a meta-analysis to determine the dose-response relationship. J Strength Cond Res 18(2):377–382PubMed Peterson MD, Rhea MR, Alvar BA (2004) Maximizing strength development in athletes: a meta-analysis to determine the dose-response relationship. J Strength Cond Res 18(2):377–382PubMed
Zurück zum Zitat Pollock M, Graves J, Bamman M, Leggett S, Carpenter D, Carr C, Cirulli J, Matkozich J, Fulton M (1993) Frequency and volume of resistance training: effect on cervical extension strength. Arch Phys Med Rehabil 74:1080–1086PubMedCrossRef Pollock M, Graves J, Bamman M, Leggett S, Carpenter D, Carr C, Cirulli J, Matkozich J, Fulton M (1993) Frequency and volume of resistance training: effect on cervical extension strength. Arch Phys Med Rehabil 74:1080–1086PubMedCrossRef
Zurück zum Zitat Rhea MR, Alvar BA, Ball SD, Burkett LN (2002) Three sets of weight training superior to 1 set with equal intensity for eliciting strength. J Strength Cond Res 16(4):525–529PubMed Rhea MR, Alvar BA, Ball SD, Burkett LN (2002) Three sets of weight training superior to 1 set with equal intensity for eliciting strength. J Strength Cond Res 16(4):525–529PubMed
Zurück zum Zitat Rhea MR, Alvar BA, Burkett LN, Ball SD (2003) A meta-analysis to determine the dose response for strength development. Med Sci Sports Exerc 35(3):456–464PubMedCrossRef Rhea MR, Alvar BA, Burkett LN, Ball SD (2003) A meta-analysis to determine the dose response for strength development. Med Sci Sports Exerc 35(3):456–464PubMedCrossRef
Zurück zum Zitat Robbins DW, Young WB, Behm DG, Payne WR (2009) Effects of agonist-antagonist complex resistance training on upper body strength and power development. J Sports Sci 27(14):1617–1625PubMedCrossRef Robbins DW, Young WB, Behm DG, Payne WR (2009) Effects of agonist-antagonist complex resistance training on upper body strength and power development. J Sports Sci 27(14):1617–1625PubMedCrossRef
Zurück zum Zitat Schlumberger A, Stec J, Schmidtbleicher D (2001) Single- vs. multiple-set strength training in women. J Strength Cond Res 15(3):284–289PubMed Schlumberger A, Stec J, Schmidtbleicher D (2001) Single- vs. multiple-set strength training in women. J Strength Cond Res 15(3):284–289PubMed
Zurück zum Zitat Seynnes O, de Boer M, Narici M (2007) Early skeletal muscle hypertrophy and architectural changes in response to high-intensity resistance training. J Appl Physiol 102:368–373PubMedCrossRef Seynnes O, de Boer M, Narici M (2007) Early skeletal muscle hypertrophy and architectural changes in response to high-intensity resistance training. J Appl Physiol 102:368–373PubMedCrossRef
Zurück zum Zitat Smith D, Bruce-Low S (2004) Strength training methods and the work of Arthur Jones. JEP Online 7(6):52–64 Smith D, Bruce-Low S (2004) Strength training methods and the work of Arthur Jones. JEP Online 7(6):52–64
Zurück zum Zitat Starkey DB, Pollock ML, Ishida Y, Welsch MA, Brechue WF, Graves JE, Feigenbaum MS (1996) Effect of resistance training volume on strength and muscle thickness. Med Sci Sports Exerc 28(10):1311–1320PubMedCrossRef Starkey DB, Pollock ML, Ishida Y, Welsch MA, Brechue WF, Graves JE, Feigenbaum MS (1996) Effect of resistance training volume on strength and muscle thickness. Med Sci Sports Exerc 28(10):1311–1320PubMedCrossRef
Zurück zum Zitat Terzis G, Spengos K, Mascher H, Georgiadis G, Manta P, Blomstrand E (2010) The degree of p70s6k and s6 phosphorylation in human skeletal muscle in response to resistance exercise depends on the training volume. Eur J Appl Physiol 110:1–9 Terzis G, Spengos K, Mascher H, Georgiadis G, Manta P, Blomstrand E (2010) The degree of p70s6k and s6 phosphorylation in human skeletal muscle in response to resistance exercise depends on the training volume. Eur J Appl Physiol 110:1–9
Zurück zum Zitat Thorstensson A, Karlsson J, Viitasalo J, Luhtanen P, Komi P (1976) Effect of strength training on emg of human skeletal muscle. Acta Physiol Scand 98:232–236PubMedCrossRef Thorstensson A, Karlsson J, Viitasalo J, Luhtanen P, Komi P (1976) Effect of strength training on emg of human skeletal muscle. Acta Physiol Scand 98:232–236PubMedCrossRef
Zurück zum Zitat Van Cutsem M, Duchateau J, Hainaut K (1998) Changes in single motor unit behaviour contribute to the increase in contraction speed after dynamic training in humans. J Physiol 513:295–305PubMedCrossRef Van Cutsem M, Duchateau J, Hainaut K (1998) Changes in single motor unit behaviour contribute to the increase in contraction speed after dynamic training in humans. J Physiol 513:295–305PubMedCrossRef
Zurück zum Zitat Van Etten L, Verstappen F, Westerterp K (1994) Effect of body build on weight-training-induced adaptations in body composition and muscular strength. Med Sci Sports Exerc 26(4):515–521PubMed Van Etten L, Verstappen F, Westerterp K (1994) Effect of body build on weight-training-induced adaptations in body composition and muscular strength. Med Sci Sports Exerc 26(4):515–521PubMed
Zurück zum Zitat Westerblad H, Duty S, Allen DG (1993) Intracellular calcium concentration during low-frequency fatigue in isolated single fibers of mouse skeletal muscle. J Appl Physiol 75:382–388PubMed Westerblad H, Duty S, Allen DG (1993) Intracellular calcium concentration during low-frequency fatigue in isolated single fibers of mouse skeletal muscle. J Appl Physiol 75:382–388PubMed
Zurück zum Zitat Winett RA (2004) Meta-analyses do not support performance of multiple sets or high volume resistance training. JEP Online 7(5):10–20 Winett RA (2004) Meta-analyses do not support performance of multiple sets or high volume resistance training. JEP Online 7(5):10–20
Zurück zum Zitat Wolfe BL, LeMura LM, Cole PJ (2004) Quantitative analysis of single- vs. multiple-set programs in resistance training. J Strength Cond Res 18(1):35–47PubMed Wolfe BL, LeMura LM, Cole PJ (2004) Quantitative analysis of single- vs. multiple-set programs in resistance training. J Strength Cond Res 18(1):35–47PubMed
Metadaten
Titel
Strength and neuromuscular adaptation following one, four, and eight sets of high intensity resistance exercise in trained males
verfasst von
P. W. M. Marshall
M. McEwen
D. W. Robbins
Publikationsdatum
01.12.2011
Verlag
Springer-Verlag
Erschienen in
European Journal of Applied Physiology / Ausgabe 12/2011
Print ISSN: 1439-6319
Elektronische ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-011-1944-x

Weitere Artikel der Ausgabe 12/2011

European Journal of Applied Physiology 12/2011 Zur Ausgabe