Leedham J S, Dowling J J
Department of Kinesiology, McMaster University, Hamilton, Ontario, Canada.
Eur J Appl Physiol Occup Physiol. 1995;70(5):421-6. doi: 10.1007/BF00618493.
The relationships of EMG and muscle force with elbow joint angle were investigated for muscle modelling purposes. Eight subjects had their arms fixed in an isometric elbow jig where the biceps brachii was electrically stimulated (30 Hz) and also in maximum voluntary contraction (MVC). Biceps EMG and elbow torque transduced at the wrist were recorded at 0.175 rad intervals through 1.75 rad of elbow extension. The results revealed that while the torque-length relationship displayed the classic inverted "U" pattern in both evoked and MVC conditions, the force-length relationship displayed a monotonically increasing pattern. Analyses of variance of the EMG data showed that there were no significant changes in the EMG amplitudes for the different joint angles during evoked or voluntary contractions. The result also showed that electrical stimulation can effectively isolated the torque-angle and force-length relationships of the biceps brachii and that the myoelectric signal during isometric contraction is uniform regardless of the length of the muscle or the joint angle.
为了进行肌肉建模,研究了肌电图(EMG)和肌肉力量与肘关节角度的关系。八名受试者的手臂固定在等长肘关节夹具中,在该夹具中,肱二头肌接受电刺激(30Hz)以及进行最大自主收缩(MVC)。在肘关节伸展1.75弧度的过程中,以0.175弧度的间隔记录手腕处转换得到的肱二头肌EMG和肘关节扭矩。结果显示,虽然在诱发和MVC条件下,扭矩-长度关系均呈现经典的倒“U”形模式,但力-长度关系呈现单调增加模式。对EMG数据的方差分析表明,在诱发或自主收缩期间,不同关节角度的EMG幅度没有显著变化。结果还表明,电刺激可以有效地分离肱二头肌的扭矩-角度和力-长度关系,并且等长收缩期间的肌电信号是均匀的,与肌肉长度或关节角度无关。