Andriacchi T P, Andersson G B, Ortengren R, Mikosz R P
J Orthop Res. 1984;1(3):266-75. doi: 10.1002/jor.1100010306.
Several factors influencing the myoelectric activity of muscles surrounding the knee joint were studied using fine-wire monopolar electrodes. The muscles studied included the vastus lateralis, vastus intermedius, rectus femoris, vastus medialis, gracilis, sartorius, biceps femoris, semimembranosus, semitendinosus, tensor fasciae latae, medial head of the gastrocnemius, and lateral head of the gastrocnemius. Muscle activity was measured in response to unidirectional loads tending to flex and extend the knee, and to combined loads of flexion-adduction, flexion-abduction, extension-adduction, and extension-abduction. Results indicate that the individual muscle responses are dependent upon the direction, magnitude, and combination of external moments, as well as on the flexion angle of the knee joint. Muscle response appeared to be influenced by certain intrinsic mechanical characteristics of the knee joint that tend to change the moment arms of the muscles as the knee moves. For example, the substantial changes in quadriceps myoelectric activity with knee flexion, with constant load applied, can be related to the movement of the tibial-femoral contact changing the lever arm of the quadriceps mechanism. This study indicates that the mechanics of the knee joint must be taken into consideration while attempting to interpret or predict the load response of muscles crossing the knee joint.
使用细钢丝单极电极研究了影响膝关节周围肌肉肌电活动的几个因素。所研究的肌肉包括股外侧肌、股中间肌、股直肌、股内侧肌、股薄肌、缝匠肌、股二头肌、半膜肌、半腱肌、阔筋膜张肌、腓肠肌内侧头和腓肠肌外侧头。测量了肌肉在倾向于使膝关节屈曲和伸展的单向负荷以及屈曲-内收、屈曲-外展、伸展-内收和伸展-外展联合负荷作用下的活动。结果表明,各肌肉的反应取决于外力矩的方向、大小和组合,以及膝关节的屈曲角度。肌肉反应似乎受到膝关节某些内在力学特性的影响,这些特性往往会随着膝关节的运动而改变肌肉的力臂。例如,在施加恒定负荷的情况下,股四头肌肌电活动随膝关节屈曲而发生的显著变化,可能与胫股接触点的移动改变了股四头肌机制的力臂有关。这项研究表明,在试图解释或预测跨越膝关节的肌肉的负荷反应时,必须考虑膝关节的力学特性。