Morrey B F, An K N, Stormont T J
Orthopedic Biomechanics Laboratory, Mayo Clinic, Rochester, Minnesota 55905.
J Bone Joint Surg Am. 1988 Feb;70(2):250-6.
A technique has been developed to study the transmission of axial force across the radiohumeral joint during simulated active motion of the elbow. Variations in the line of action and in the amount of muscle load, as well as in rotation of the forearm during flexion and extension of the elbow, were assessed. Consistent patterns of force transmission were demonstrated in the three specimens that were studied. The greatest force transmission occurred between zero and 30 degrees of flexion, and it consistently decreased with increased flexion. Force transmission was consistently greater in magnitude when the forearm was in pronation than when it was in supination. The varus-valgus pivot point with the elbow extended was established to closely approximate the line of action of the brachial muscle, which crosses near the center of the lateral portion of the trochlea.
已经开发出一种技术来研究在模拟的肘部主动运动过程中轴向力在桡肱关节上的传递。评估了作用线、肌肉负荷量以及肘部屈伸过程中前臂旋转的变化。在所研究的三个标本中显示出一致的力传递模式。最大的力传递发生在屈曲0度至30度之间,并且随着屈曲增加而持续下降。当前臂处于旋前位时,力传递的大小始终比处于旋后位时更大。确定了伸直肘部时的内翻-外翻枢轴点,以紧密接近肱肌的作用线,肱肌在滑车外侧部分的中心附近交叉。