Li W, Sakamoto K
Department of Communications and Systems, University of Electro-Communications, Tokyo, Japan.
Appl Human Sci. 1996 Jan;15(1):41-53. doi: 10.2114/jpa.15.41.
Surface electromyogram (EMG) was recorded in m. biceps brachii during the contractions of 20, 40 and 60% of maximum voluntary isometric contraction (MVC) in twelve healthy male subjects, using surface array electrodes. The distribution of muscle fiber conduction velocity (MFCV) was found directly using the averaging technique and the cross-correlation function technique. MFCVs in the region of 20-40 mm measured from end-plate denoted constant value of about 4 m/s in 20% MVC, while MFCVs in the region around end-plate and tendons showed about 10 m/s in 20% MVC. The values of MFCV depended on the contraction levels of muscle. The model for the generation of MFCV which considered the ensemble of muscle fibers with the shape of a cone was proposed. The theoretical values of MFCV by the muscle fiber ensemble model (MFE model) proposed in the paper showed in good agreement with the experimental results.
在12名健康男性受试者中,使用表面阵列电极在肱二头肌进行最大自主等长收缩(MVC)的20%、40%和60%收缩时记录表面肌电图(EMG)。采用平均技术和互相关函数技术直接测量肌纤维传导速度(MFCV)的分布。在20%MVC时,从终板测量的20 - 40毫米区域内的MFCV显示约为4米/秒的恒定值,而在20%MVC时,终板和肌腱周围区域的MFCV显示约为10米/秒。MFCV的值取决于肌肉的收缩水平。提出了考虑呈锥形的肌纤维集合的MFCV生成模型。本文提出的肌纤维集合模型(MFE模型)的MFCV理论值与实验结果显示出良好的一致性。