Barry Benjamin K, Pascoe Michael A, Riek Stephan, Carson Richard G, Enoka Roger M
Department of Integrative Physiology, Neurophysiology of Movement Laboratory, University of Colorado, Boulder, CO 80309, USA.
Exp Brain Res. 2009 Mar;193(3):351-9. doi: 10.1007/s00221-008-1631-2. Epub 2008 Nov 12.
The purpose of the experiment was to compare the level of synchronization exhibited by pairs of motor units located within and between functionally distinct regions of the biceps brachii muscle. Pairs of single motor units were recorded from seven subjects using separate electrodes located in the lateral and medial aspects of the long head of biceps brachii. Participants were required to exert a combination of flexion and supination torques so that both motor units discharged at approximately 10 pps for >/=200 s and the level of motor unit synchronization could be quantified. When motor unit recordings were sufficiently stable at the completion of this synchrony task, a series of ramp contractions with multiple combinations of flexion and supination torques were performed to characterize the recruitment thresholds of the motor units. Common input strength (CIS) was significantly greater (P < 0.01) for the within-region pairs of motor units (0.28 extra sync. imps/s, n = 26) than for the between-region pairs (0.13 extra sync. imps/s, n = 18), but did not differ significantly for the 12 within-region pairs from the lateral head and 14 from the medial head (0.27 vs. 0.29 extra sync. imps/s; P = 0.83). Recruitment thresholds were measured for 33 motor units, but there was only a weak association between CIS and the respective recruitment patterns for motor unit pairs (n = 9). The present investigation provides evidence of a differential distribution of synaptic input across the biceps brachii motor neuron pool, but this appears to have minimal association with the recruitment patterns for individual motor units.
该实验的目的是比较肱二头肌功能不同区域内和区域间的运动单位对所表现出的同步化水平。使用位于肱二头肌长头外侧和内侧的单独电极,从7名受试者身上记录单个运动单位对。要求参与者施加屈曲和旋后扭矩的组合,以使两个运动单位以约10次/秒的频率放电≥200秒,从而可以量化运动单位同步化水平。当在该同步任务完成时运动单位记录足够稳定时,进行一系列具有多种屈曲和旋后扭矩组合的斜坡收缩,以表征运动单位的募集阈值。区域内运动单位对的共同输入强度(CIS)(0.28额外同步脉冲/秒,n = 26)显著高于区域间运动单位对(0.13额外同步脉冲/秒,n = 18)(P < 0.01),但外侧头的12个区域内运动单位对和内侧头的14个区域内运动单位对之间无显著差异(0.27对0.29额外同步脉冲/秒;P = 0.