Increased rate of force development and neural drive of human skeletal muscle following resistance training

被引:1257
作者
Aagaard, P
Simonsen, EB
Andersen, JL
Magnusson, P
Dyhre-Poulsen, P
机构
[1] Univ Copenhagen, Panum Inst, Inst Med Physiol, Dept Neurophysiol, DK-2200 Copenhagen N, Denmark
[2] Univ Copenhagen, Panum Inst, Anat Dept C, DK-2200 Copenhagen, Denmark
[3] Univ Copenhagen, Rigshosp, Copenhagen Muscle Res Ctr, DK-2200 Copenhagen N, Denmark
[4] Univ Copenhagen, Bispebjerg Hosp, Sports Med Res Unit, Team Danmark Testctr, DK-2200 Copenhagen N, Denmark
关键词
electromyography; neural adaptation; quadriceps muscle;
D O I
10.1152/japplphysiol.00283.2002
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The maximal rate of rise in muscle force [rate of force development (RFD)] has important functional consequences as it determines the force that can be generated in the early phase of muscle contraction (0-200 ms). The present study examined the effect of resistance training on contractile RFD and efferent motor outflow ("neural drive") during maximal muscle contraction. Contractile RFD (slope of force-time curve), impulse (time-integrated force), electromyography (EMG) signal amplitude (mean average voltage), and rate of EMG rise (slope of EMG-time curve) were determined (1-kHz sampling rate) during maximal isometric muscle contraction (quadriceps femoris) in 15 male subjects before and after 14 wk of heavy-resistance strength training (38 sessions). Maximal isometric muscle strength [maximal voluntary contraction (MVC)] increased from 291.1 +/- 9.8 to 339.0 +/- 10.2 N . m after training. Contractile RFD determined within time intervals of 30, 50, 100, and 200 ms relative to onset of contraction increased from 1,601 +/- 117 to 2,020 +/- 119 (P <0.05), 1,802 +/- 121 to 2,201 +/- 106 (P < 0.01), 1,543 +/- 83 to 1,806 +/- 69 (P < 0.01), and 1,141 +/- 45 to 1,363 +/- 44 N.m.s(-1) (P < 0.01), respectively. Corresponding increases were observed in contractile impulse (P < 0.01- 0.05). When normalized relative to MVC, contractile RFD increased 15% after training (at zero to one-sixth MVC; P < 0.05). Furthermore, muscle EMG increased (P < 0.01-0.05) 22-143% (mean average voltage) and 41-106% (rate of EMG rise) in the early contraction phase (0-200 ms). In conclusion, increases in explosive muscle strength (contractile RFD and impulse) were observed after heavy-resistance strength training. These findings could be explained by an enhanced neural drive, as evidenced by marked increases in EMG signal amplitude and rate of EMG rise in the early phase of muscle contraction.
引用
收藏
页码:1318 / 1326
页数:9
相关论文
共 48 条
[1]   Neural inhibition during maximal eccentric and concentric quadriceps contraction:: effects of resistance training [J].
Aagaard, P ;
Simonsen, EB ;
Andersen, JL ;
Magnusson, SP ;
Halkjær-Kristensen, J ;
Dyhre-Poulsen, P .
JOURNAL OF APPLIED PHYSIOLOGY, 2000, 89 (06) :2249-2257
[2]   ISOKINETIC HAMSTRING QUADRICEPS STRENGTH RATIO - INFLUENCE FROM JOINT ANGULAR VELOCITY, GRAVITY CORRECTION AND CONTRACTION MODE [J].
AAGAARD, P ;
SIMONSEN, EB ;
TROLLE, M ;
BANGSBO, J ;
KLAUSEN, K .
ACTA PHYSIOLOGICA SCANDINAVICA, 1995, 154 (04) :421-427
[3]   MOMENT AND POWER-GENERATION DURING MAXIMAL KNEE EXTENSIONS PERFORMED AT LOW AND HIGH SPEEDS [J].
AAGAARD, P ;
SIMONSEN, EB ;
TROLLE, M ;
BANGSBO, J ;
KLAUSEN, K .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY AND OCCUPATIONAL PHYSIOLOGY, 1994, 69 (05) :376-381
[4]   Correlation between contractile strength and myosin heavy chain isoform composition in human skeletal muscle [J].
Aagaard, P ;
Andersen, JL .
MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 1998, 30 (08) :1217-1222
[5]   A mechanism for increased contractile strength of human pennate muscle in response to strength training:: changes in muscle architecture [J].
Aagaard, P ;
Andersen, JL ;
Dyhre-Poulsen, P ;
Leffers, AM ;
Wagner, A ;
Magnusson, SP ;
Halkjær-Kristensen, J ;
Simonsen, EB .
JOURNAL OF PHYSIOLOGY-LONDON, 2001, 534 (02) :613-623
[6]   Neural adaptation to resistance training: changes in evoked V-wave and H-reflex responses [J].
Aagaard, P ;
Simonsen, EB ;
Andersen, JL ;
Magnusson, P ;
Dyhre-Poulsen, P .
JOURNAL OF APPLIED PHYSIOLOGY, 2002, 92 (06) :2309-2318
[7]   EFFECTS OF DIFFERENT STRENGTH TRAINING REGIMES ON MOMENT AND POWER-GENERATION DURING DYNAMIC KNEE EXTENSIONS [J].
AAGAARD, P ;
SIMONSEN, EB ;
TROLLE, M ;
BANGSBO, J ;
KLAUSEN, K .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY AND OCCUPATIONAL PHYSIOLOGY, 1994, 69 (05) :382-386
[8]  
Andersen JL, 2000, MUSCLE NERVE, V23, P1095
[9]   GENERALITY VERSUS SPECIFICITY - A COMPARISON OF DYNAMIC AND ISOMETRIC MEASURES OF STRENGTH AND SPEED-STRENGTH [J].
BAKER, D ;
WILSON, G ;
CARLYON, B .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY AND OCCUPATIONAL PHYSIOLOGY, 1994, 68 (04) :350-355
[10]  
Basmajian J. V., 1985, MUSCLES ALIVE THEIR