Li W, Sakamoto K
Department of Communications and Systems, University of Electro-Communications, Tokyo, Japan.
Appl Human Sci. 1996 Jan;15(1):25-32. doi: 10.2114/jpa.15.25.
A surface array electrode was used to investigate muscle fiber conduction velocity (MFCV) and EMG power spectrum during voluntary isometric contraction of m. biceps brachii. The mean power frequency (MPF) and the total power (TP) at various locations of the muscle were obtained from the power spectrum. MFCVs at various locations of the muscle were measured directly using the averaging method. The values of MPF, TP and MFCV were identified with respect to the electrode locations on the m. biceps brachii. MPF was shown as high near the end-plate and low near the tendon of the muscle during contraction of 40% of isometric maximum voluntary contraction (MVC). TP showed low value near the end-plate and the tendon of the muscle fiber and different values at different location setting electrode during voluntary isometric contraction. TP at each location on the muscle surface increased when the contraction levels increased in the contractions range of 20 to 60% MVC. MFCVs showed a high value near the end-plate and the tendon of the muscle during the contraction of 40% MVC. These results indicated that MPF, TP and MFCV at different locations on the muscle were different along the length of the muscle fiber.
使用表面阵列电极研究肱二头肌在自主等长收缩过程中的肌纤维传导速度(MFCV)和肌电图功率谱。从功率谱中获取肌肉不同位置的平均功率频率(MPF)和总功率(TP)。使用平均法直接测量肌肉不同位置的MFCV。MPF、TP和MFCV的值根据肱二头肌上电极的位置确定。在40%等长最大自主收缩(MVC)收缩期间,MPF在终板附近较高,在肌腱附近较低。在自主等长收缩期间,TP在肌纤维的终板和肌腱附近显示低值,并且在不同位置设置电极时具有不同的值。当收缩水平在20%至60%MVC的收缩范围内增加时,肌肉表面每个位置的TP都会增加。在40%MVC收缩期间,MFCV在肌纤维的终板和肌腱附近显示高值。这些结果表明,肌肉不同位置的MPF、TP和MFCV沿肌纤维长度不同。