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对手指、肘部和肩关节施加动作的检测。

Detections of movements imposed on finger, elbow and shoulder joints.

作者信息

Hall L A, McCloskey D I

出版信息

J Physiol. 1983 Feb;335:519-33. doi: 10.1113/jphysiol.1983.sp014548.

Abstract

The angular displacements necessary for 70% correct detection were determined in normal subjects at the shoulder and elbow joints and at the terminal joint of the middle finger. Angular velocities of displacement between 0.125 degrees and 160 degrees/s were tested. Each joint was tested in the mid-range of its normal excursion. The joints were carefully supported for testing and the muscles acting at the joints were relaxed. When assessed in terms of angular displacements and angular velocities, proprioceptive performance at the shoulder and elbow joints was superior to that at the finger joint. Optimal performance at the finger joint was attained over the range of angular velocities from 10 degrees to 80 degrees/s. Optimal performance at both more proximal joints was optimal over a wider range (2 degrees-80 degrees/s). Active pointing movements made without vision of the moving part were performed at each joint at velocities within the range of optimal proprioceptive performance. However, when detection levels and displacement velocities were expressed in terms of linear displacements and velocities at the finger tip for all three joints, the finger joint gave the best performance and the shoulder the worst. In practical terms, therefore, displacements of a given linear extent are best detected if they move distal joints and worst if they move proximal joints. For the elbow and finger joints the detection level and velocity data were expressed also in terms of proportional changes in the lengths of muscles operating at these joints, and as proportional changes in the distance between the points of attachment of the joint capsules. Analysis in terms of proportional changes of muscle length showed remarkably similar performance levels at both joints. This suggests that intramuscular receptors are important determinants of proprioceptive performance. Analysis in terms of joint capsular displacement did not unify the data: on this form of analysis proprioceptive performance at the elbow joint was superior.

摘要

在正常受试者的肩关节、肘关节和中指末节关节处,测定了70%正确检测所需的角位移。测试了0.125度至160度/秒之间的位移角速度。每个关节在其正常活动范围的中间位置进行测试。测试时关节得到仔细支撑,作用于关节的肌肉处于放松状态。从角位移和角速度方面评估时,肩关节和肘关节的本体感觉表现优于手指关节。手指关节在10度至80度/秒的角速度范围内表现最佳。两个更靠近近端的关节在更宽的范围(2度 - 80度/秒)内表现最佳。在每个关节以最佳本体感觉表现范围内的速度进行了不看运动部位的主动指向运动。然而,当以所有三个关节指尖处的线性位移和速度来表示检测水平和位移速度时,手指关节表现最佳,肩关节最差。因此,实际上,给定线性范围的位移如果移动远端关节则最易被检测到,如果移动近端关节则最难被检测到。对于肘关节和手指关节,检测水平和速度数据也根据在这些关节处起作用的肌肉长度的比例变化以及关节囊附着点之间距离的比例变化来表示。根据肌肉长度比例变化进行的分析显示,两个关节的表现水平非常相似。这表明肌内感受器是本体感觉表现的重要决定因素。根据关节囊位移进行的分析未能统一数据:在这种分析形式下,肘关节的本体感觉表现更优。

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