Effect of joint position on the electromyographic activity of the semitendinosus muscle.

J Kubota, F Kaneko, M Shimada, S Torii, T Fukubayashi
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Abstract

The semitendinosus (ST) muscle has a tendinous intersection within the muscle belly that separates the ST muscle into distinct proximal and distal compartments. Thus far, no study has compared the electromyographic (EMG) activities between the proximal and distal compartments of the human ST muscle. This study aimed to investigate the intramuscular EMG activity patterns of the proximal and distal compartments of the ST muscle by altering the hip and knee joint positions. The study population comprised eight healthy male volunteers. They performed ramp isometric knee flexion tasks form the relaxed state to the maximal voluntary contraction (MVC) state with (1) the hip and knee at 90 degrees and 0 degrees, respectively (90-0 position), (2) both the hip and knee at 00 (0-0 position), and (3) the hip and knee at 0 degrees and 90 degrees, respectively (0-90 position). Fine-wire electrodes were inserted into the proximal and distal compartments of the ST muscle and the individual EMG activities were recorded. In the 90-0 position, the EMG activity of the distal compartment was higher than that of the proximal compartment at 60%, 80%, and 90% MVC. Moreover, in the 0-90 position, the EMG activity of the proximal compartment was higher than that of the distal compartment at 60% MVC. These results indicated that the lengthened or shortened muscle conditions induced regional differences in the EMG activity patterns, while the two compartments showed equivalent activity when the muscle length was moderate.

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关节位置对半腱肌肌电活动的影响。
半腱肌(ST)在肌腹内有一个肌腱相交,将ST肌分成明显的近端和远端隔室。到目前为止,还没有研究比较人类ST肌近端和远端间室的肌电图(EMG)活动。本研究旨在通过改变髋关节和膝关节的位置来研究ST肌近端和远端腔室的肌内肌电图活动模式。研究人群包括8名健康男性志愿者。他们从放松状态到最大自主收缩(MVC)状态进行坡道等距膝关节屈曲任务,(1)髋关节和膝关节分别处于90度和0度(90-0位),(2)髋关节和膝关节都处于00度(0-0位),(3)髋关节和膝关节分别处于0度和90度(0-90位)。细丝电极分别插入ST肌的近端和远端隔室,记录个体肌电图活动。在90-0位置,远端筋膜室的肌电活动高于近端筋膜室的60%、80%和90% MVC。此外,在0-90位,60% MVC时近端筋膜室的肌电活动高于远端筋膜室。这些结果表明,肌肉长度变长或变短导致肌电活动模式的区域差异,而肌肉长度适中时,两个隔室表现出相当的活动。
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