Jensen C, Vasseljen O, Westgaard R H
Division of Organization and Work Science, Norwegian Institute of Technology, Trondheim.
Eur J Appl Physiol Occup Physiol. 1993;67(3):266-73. doi: 10.1007/BF00864227.
The effect of electrode position on the upper trapezius muscle on the myo-electric signal amplitude was investigated with special reference to arm position and estimate of force output. Previously, a depression of the electromyogram (EMG) signal has been reported midway between the seventh cervical vertebrae (C7) and acromion (Veiersted 1991, Eur J Appl Physiol 62:91-98) although this electrode position has been recommended (Zipp 1982, Eur J Appl Physiol 50: 41-54). Ten healthy subjects performed maximal shoulder elevations with the arm in vertical, abducted and flexed positions and they performed a dynamic movement test. The myo-electric signal was recorded along the length of the right upper trapezius muscle by a 16-channel bipolar array electrode and was integrated with a 0.2-s time resolution. A region just lateral to the midpoint between C7 and the lateral edge of acromion was found with high and stable amplitudes (% coefficient of variation equalled 5.6). At the midpoint a dip in the amplitude profile appeared which was slightly displaced by arm abduction or flexion probably due to sliding of the skin relative to the muscle. A linear EMG-force relationship was found in the region with high signal amplitudes, whereas the more lateral and the dip region showed highly variable EMG-force relationships. Thus, it was found that when using bipolar surface electrodes with an interelectrode distance of 2 cm a centre position 2 cm lateral to the midpoint between C7 and acromion provided good repeatability and high signal yield.
研究了电极位置对斜方肌上部肌电信号幅度的影响,并特别参考了手臂位置和力输出估计。此前,尽管推荐了该电极位置(齐普,1982年,《欧洲应用生理学杂志》50:41 - 54),但有报道称在第七颈椎(C7)和肩峰之间的中点处肌电图(EMG)信号出现下降(韦尔斯特德,1991年,《欧洲应用生理学杂志》62:91 - 98)。十名健康受试者在手臂处于垂直、外展和屈曲位置时进行最大肩部上举,并进行动态运动测试。通过16通道双极阵列电极沿右斜方肌上部的长度记录肌电信号,并以0.2秒的时间分辨率进行积分。发现在C7与肩峰外侧边缘中点稍外侧的区域具有高且稳定的幅度(变异系数百分比等于5.6)。在中点处,幅度曲线出现下降,手臂外展或屈曲可能会使其略有移位,这可能是由于皮肤相对于肌肉滑动所致。在信号幅度高的区域发现了线性肌电 - 力关系,而更外侧和下降区域显示出高度可变的肌电 - 力关系。因此,发现当使用电极间距为2厘米的双极表面电极时,C7与肩峰中点外侧2厘米处的中心位置提供了良好的重复性和高信号输出。