Hayashi R
Institute of Equilibrium Research, Gifu University of Medicine, Japan.
Electromyogr Clin Neurophysiol. 1999 Jun;39(4):207-11.
Motor unit discharge (MUD) patterns of the soleus muscles associated with rapid forward body sway were studied in relation to displacement of the center of foot pressure (CFP) and to angular changes in the position of the ankle joint. Subjects were instructed to shift the CFP from a relaxed bending posture (N) to a leaning posture half of maximally forward (1/2F) by swaying their bodies, pivoting at the ankles as rapidly and accurately as possible following an auditory signal. Ten motor units recorded from 5 subjects were studied. During body sway accompanied by elongation of the soleus muscle, a stereotyped serial motor unit discharge pattern was observed: cessation of unit discharge (acceleration phase), and then resumption of unit discharge (deceleration and stop phase). The rate of MUD during the deceleration and stop phase was higher than that when subjects held their bodies during holding his body at N or 1/2F. A strong positive correlation was observed between the timing of the resumption of MUD and both the CFP changes and the angular changes in the position of the ankle joint. These results strongly suggest that peripheral inputs are important for control of both the timing of the resumption and the frequency of MUD in the performance of a rapid body sway.
研究了与身体快速向前摇摆相关的比目鱼肌运动单位放电(MUD)模式,该模式与足底压力中心(CFP)的位移以及踝关节位置的角度变化有关。受试者被指示通过身体摇摆,在听到听觉信号后尽可能快速准确地以踝关节为轴转动,将CFP从放松的弯曲姿势(N)转移到最大向前倾斜姿势的一半(1/2F)。对从5名受试者记录的10个运动单位进行了研究。在比目鱼肌伸长伴随的身体摇摆过程中,观察到一种定型的连续运动单位放电模式:单位放电停止(加速阶段),然后单位放电恢复(减速和停止阶段)。减速和停止阶段的MUD速率高于受试者在N或1/2F姿势下保持身体静止时的速率。在MUD恢复的时间与CFP变化以及踝关节位置的角度变化之间观察到强烈的正相关。这些结果有力地表明,外周输入对于在快速身体摇摆过程中控制MUD恢复的时间和频率都很重要。