Motor skill training and strength training are associated with different plastic changes in the central nervous system

被引:273
作者
Jensen, JL
Marstrand, PCD
Nielsen, JB
机构
[1] Univ Copenhagen, Panum Inst, Dept Med Physiol, DK-2200 Copenhagen, Denmark
[2] Univ Copenhagen, Panum Inst, Inst Exercise & Sport Sci, DK-2200 Copenhagen, Denmark
关键词
plasticity; corticospinal tract; transcranial magnetic stimulation; skill learning; detraining;
D O I
10.1152/japplphysiol.01408.2004
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Changes in corticospinal excitability induced by 4 wk of heavy strength training or visuomotor skill learning were investigated in 24 healthy human subjects. Measurements of the input-output relation for biceps brachii motor evoked potentials (MEPs) elicited by transcranial magnetic stimulation were obtained at rest and during voluntary contraction in the course of the training. The training paradigms induced specific changes in the motor performance capacity of the subjects. The strength training group increased maximal dynamic and isometric muscle strength by 31% (P < 0.001) and 12.5% (P = 0.045), respectively. The skill learning group improved skill performance significantly (P < 0.001). With one training bout, the only significant change in transcranial magnetic stimulation parameters was an increase in skill learning group maximal MEP level (MEPmax) at rest (P = 0.02) for subjects performing skill training. With repeated skill training three times per week for 4 wk, MEPmax increased and the minimal stimulation intensity required to elicit MEPs decreased significantly at rest and during contraction (P < 0.05). In contrast, MEPmax and the slope of the input-output relation both decreased significantly at rest but not during contraction in the strength-trained subjects (P <= 0.01). No significant changes were observed in a control group. A significant correlation between changes in neurophysiological parameters and motor performance was observed for skill learning but not strength training. The data show that increased corticospinal excitability may develop over several weeks of skill training and indicate that these changes may be of importance for task acquisition. Because strength training was not accompanied by similar changes, the data suggest that different adaptive changes are involved in neural adaptation to strength training.
引用
收藏
页码:1558 / 1568
页数:11
相关论文
共 68 条
[1]   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
[2]   Antagonist muscle coactivation during isokinetic knee extension [J].
Aagaard, P ;
Simonsen, EB ;
Andersen, JL ;
Magnusson, SP ;
Bojsen-Moller, F ;
Dyhre-Poulsen, P .
SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS, 2000, 10 (02) :58-67
[3]   RELIABILITY OF MEASUREMENTS OF MUSCLE STRENGTH AND VOLUNTARY ACTIVATION USING TWITCH INTERPOLATION [J].
ALLEN, GM ;
GANDEVIA, SC ;
MCKENZIE, DK .
MUSCLE & NERVE, 1995, 18 (06) :593-600
[4]   RAPID MODULATION OF HUMAN CORTICAL MOTOR OUTPUTS FOLLOWING ISCHEMIC NERVE BLOCK [J].
BRASILNETO, JP ;
VALLSSOLE, J ;
PASCUALLEONE, A ;
CAMMAROTA, A ;
AMASSIAN, VE ;
CRACCO, R ;
MACCABEE, P ;
CRACCO, J ;
HALLETT, M ;
COHEN, LG .
BRAIN, 1993, 116 :511-525
[5]   Cortical plasticity: From synapses to maps [J].
Buonomano, DV ;
Merzenich, MM .
ANNUAL REVIEW OF NEUROSCIENCE, 1998, 21 :149-186
[6]   Neurophysiological methods for studies of the motor system in freely moving human subjects [J].
Capaday, C .
JOURNAL OF NEUROSCIENCE METHODS, 1997, 74 (02) :201-218
[7]   Reliability of the input-output properties of the cortico-spinal pathway obtained from transcranial magnetic and electrical stimulation [J].
Carroll, TJ ;
Riek, S ;
Carson, RG .
JOURNAL OF NEUROSCIENCE METHODS, 2001, 112 (02) :193-202
[8]   The sites of neural adaptation induced by resistance training in humans [J].
Carroll, TJ ;
Riek, S ;
Carson, RG .
JOURNAL OF PHYSIOLOGY-LONDON, 2002, 544 (02) :641-652
[9]   Neural adaptations to resistance training - Implications for movement control [J].
Carroll, TJ ;
Riek, S ;
Carson, RG .
SPORTS MEDICINE, 2001, 31 (12) :829-840
[10]  
Classen J, 1999, EEG CL N SU, P162