Motor-unit synchronization increases EMG amplitude and decreases force steadiness of simulated contractions

被引:355
作者
Yao, WX
Fuglevand, AJ
Enoka, RM [1 ]
机构
[1] Univ Colorado, Dept Kinesiol & Appl Physiol, Boulder, CO 80309 USA
[2] Univ Arizona, Dept Physiol, Tucson, AZ 85721 USA
关键词
D O I
10.1152/jn.2000.83.1.441
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The purpose of the study was to determine the effect of motor-unit synchronization on the surface electromyogram (EMG) and isometric force using a computer model of muscle contraction. The EMG and force were simulated by generating muscle fiber action potentials, defining motor-unit mechanical characteristics and territories, estimating motor-unit action potentials, specifying motor-unit discharge times, and imposing various levels of motor-unit synchronization. The output (EMG and force) was simulated at 11 levels of excitation, ranging from 5 to 100% of maximum. To synchronize motor-unit activity, selected motor-unit discharge times were adjusted; however, the number of motor units recruited and the average discharge rate of each unit was constant across synchronization conditions for a given level of excitation. Two levels of synchronization were imposed on the discharge times: a moderate and a high level, which approximated the experimentally observed range of motor-unit synchronization. The moderate level of synchrony caused the average EMG to increase by similar to 65%, whereas the high level caused a 130% increase in the EMG with respect to the no-synchrony condition. Neither synchrony condition influenced the magnitude of the average force. However, motor-unit synchronization did increase the amplitude of the fluctuations in the simulated force, especially at intermediate levels of excitation. In conclusion, motor-unit synchronization increased the amplitude of the average rectified EMG and decreased the steadiness of the force exerted by the muscle in simulated contractions.
引用
收藏
页码:441 / 452
页数:12
相关论文
共 68 条
[31]   TRAINING-RELATED ENHANCEMENT IN THE CONTROL OF MOTOR OUTPUT IN ELDERLY HUMANS [J].
KEEN, DA ;
YUE, GH ;
ENOKA, RM .
JOURNAL OF APPLIED PHYSIOLOGY, 1994, 77 (06) :2648-2658
[32]   HIGH-FREQUENCY REPETITIVE FIRING OF CAT LUMBOSACRAL MOTONEURONES STIMULATED BY LONG-LASTING INJECTED CURRENTS [J].
KERNELL, D .
ACTA PHYSIOLOGICA SCANDINAVICA, 1965, 65 (1-2) :74-&
[33]   SYNAPTIC CONNECTIONS TO INTERCOSTAL MOTONEURONS AS REVEALED BY AVERAGE COMMON EXCITATION POTENTIAL [J].
KIRKWOOD, PA ;
SEARS, TA .
JOURNAL OF PHYSIOLOGY-LONDON, 1978, 275 (FEB) :103-134
[34]  
Laidlaw D. H., 1997, Medicine and Science in Sports and Exercise, V29, pS22
[35]   MYOELECTRIC SIGNAL VERSUS FORCE RELATIONSHIP IN DIFFERENT HUMAN MUSCLES [J].
LAWRENCE, JH ;
DE LUCA, CJ .
JOURNAL OF APPLIED PHYSIOLOGY, 1983, 54 (06) :1653-1659
[36]  
MATTHEWS PBC, 1980, J PHYSIOL-LONDON, V302, P427
[37]   Frequency peaks of tremor, muscle vibration and electromyographic activity at 10 Hz, 20 Hz and 40 Hz during human finger muscle contraction may reflect rhythmicities of central neural firing [J].
McAuley, JH ;
Rothwell, JC ;
Marsden, CD .
EXPERIMENTAL BRAIN RESEARCH, 1997, 114 (03) :525-541
[38]   TERMINALS OF SINGLE IA FIBERS - LOCATION, DENSITY, AND DISTRIBUTION WITHIN A POOL OF 300 HOMONYMOUS MOTONEURONS [J].
MENDELL, LM ;
HENNEMAN, E .
JOURNAL OF NEUROPHYSIOLOGY, 1971, 34 (01) :171-+
[39]   ORDERLY RECRUITMENT OF HUMAN MOTOR UNITS DURING VOLUNTARY ISOMETRIC CONTRACTIONS [J].
MILNERBR.HS ;
STEIN, RB ;
YEMM, R .
JOURNAL OF PHYSIOLOGY-LONDON, 1973, 230 (02) :359-370
[40]   CONTRACTILE PROPERTIES OF HUMAN MOTOR UNITS DURING VOLUNTARY ISOMETRIC CONTRACTIONS [J].
MILNERBR.HS ;
STEIN, RB ;
YEMM, R .
JOURNAL OF PHYSIOLOGY-LONDON, 1973, 228 (02) :285-306