Graduate School of Education and Human Development, Nagoya University, Japan.
J Electromyogr Kinesiol. 2013 Aug;23(4):831-7. doi: 10.1016/j.jelekin.2013.02.005. Epub 2013 Mar 9.
Although the possibility that the vastus intermedius (VI) muscle contributes to flexion of the knee joint has been suggested previously, the detail of its functional role in knee flexion is not well understood. The purpose of this study was to examine the antagonist coactivation of VI during isometric knee flexion. Thirteen men performed 25-100% of maximal voluntary contraction (MVC) at 90°, 120°, and 150° knee joint angles. Surface electromyography (EMG) of the four individual muscles in the quadriceps femoris (QF) was recorded and normalized by the EMG signals during isometric knee extension at MVC. Cross-talk on VI EMG signal was assessed based on the median frequency response to selective cooling of hamstring muscles. Normalized EMG of the VI was significantly higher than that of the other synergistic QF muscles at each knee joint angle (all P<0.05) with minimum cross-talk from the hamstrings to VI. There were significant correlations between the EMG signal of the hamstrings and VI (r=0.55-0.85, P<0.001). These results suggest that VI acts as a primary antagonistic muscle of QF during knee flexion, and that VI is presumably a main contributor to knee joint stabilization.
虽然先前已经提出股中间肌(VI)可能有助于膝关节的屈曲,但其在膝关节屈曲中的具体功能作用尚不清楚。本研究旨在探讨等长膝关节屈曲过程中 VI 的拮抗肌共同激活情况。13 名男性在 90°、120°和 150°膝关节角度下完成了 25%-100%最大自主收缩(MVC)。股四头肌(QF)的四个单独肌肉的表面肌电图(EMG)记录,并通过 MVC 等长膝关节伸展时的 EMG 信号进行归一化。根据选择性冷却腘绳肌对 VI EMG 信号的中频响应评估了 VI 的串扰。在每个膝关节角度下,VI 的归一化 EMG 均显著高于其他协同 QF 肌肉(均 P<0.05),并且来自腘绳肌的串扰最小。腘绳肌和 VI 的 EMG 信号之间存在显著相关性(r=0.55-0.85,P<0.001)。这些结果表明,VI 在膝关节屈曲过程中作为 QF 的主要拮抗肌,并且 VI 可能是膝关节稳定的主要贡献者。