Keenan Kevin G, Farina Dario, Merletti Roberto, Enoka Roger M
Department of Integrative Physiology, University of Colorado at Boulder, CO 80309-0354, USA.
J Appl Physiol (1985). 2006 Jun;100(6):1928-37. doi: 10.1152/japplphysiol.01282.2005. Epub 2006 Jan 5.
The purpose of the study was to evaluate the influence of selected physiological parameters on amplitude cancellation in the simulated surface electromyogram (EMG) and the consequences for spike-triggered averages of motor unit potentials derived from the interference and rectified EMG signals. The surface EMG was simulated from prescribed recruitment and rate coding characteristics of a motor unit population. The potentials of the motor units were detected on the skin over a hand muscle with a bipolar electrode configuration. Averages derived from the EMG signal were generated using the discharge times for each of the 24 motor units with lowest recruitment thresholds from a population of 120 across three conditions: 1) excitation level; 2) motor unit conduction velocity; and 3) motor unit synchronization. The area of the surface-detected potential was compared with potentials averaged from the interference, rectified, and no-cancellation EMGs. The no-cancellation EMG comprised motor unit potentials that were rectified before they were summed, thereby preventing cancellation between the opposite phases of the potentials. The percent decrease in area of potentials extracted from the rectified EMG was linearly related to the amount of amplitude cancellation in the interference EMG signal, with the amount of cancellation influenced by variation in excitation level and motor unit conduction velocity. Motor unit synchronization increased potentials derived from both the rectified and interference EMG signals, although cancellation limited the increase in area for both potentials. These findings document the influence of amplitude cancellation on motor unit potentials averaged from the surface EMG and the consequences for using the procedure to characterize motor unit properties.
本研究的目的是评估所选生理参数对模拟表面肌电图(EMG)中幅度抵消的影响,以及对从干扰和整流后的EMG信号得出的运动单位电位的触发尖峰平均值的影响。表面EMG是根据运动单位群体的规定募集和速率编码特性模拟出来的。采用双极电极配置在手部肌肉上方的皮肤上检测运动单位的电位。在三种情况下,从120个运动单位群体中选取24个募集阈值最低的运动单位,利用其放电时间生成从EMG信号得出的平均值:1)兴奋水平;2)运动单位传导速度;3)运动单位同步性。将表面检测到的电位面积与从干扰、整流和无抵消EMG中平均得到的电位进行比较。无抵消EMG包括在求和之前进行整流的运动单位电位,从而防止电位相反相位之间的抵消。从整流EMG中提取的电位面积百分比下降与干扰EMG信号中的幅度抵消量呈线性相关,抵消量受兴奋水平和运动单位传导速度变化的影响。运动单位同步性增加了从整流和干扰EMG信号得出的电位,尽管抵消限制了两种电位面积的增加。这些发现证明了幅度抵消对从表面EMG平均得到的运动单位电位的影响以及使用该程序表征运动单位特性的后果。