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不同肌肉激活水平下功能姿势时的肩关节僵硬

Shoulder Joint Stiffness in a Functional Posture at Various Levels of Muscle Activation.

作者信息

Yahya Yahya, Hunter Ian, Besier Thor, Taberner Andrew, Ruddy Bryan

出版信息

IEEE Trans Biomed Eng. 2022 Jul;69(7):2192-2201. doi: 10.1109/TBME.2021.3138398. Epub 2022 Jun 17.

Abstract

OBJECTIVE

In this study, we present a method to quantify the mechanics of the shoulder joint in a functional posture, in two degrees of freedom: internal/external rotation and horizontal abduction/adduction.

METHODS

We performed experiments on 15 healthy participants using a custom perturbation robot. Perturbations were applied in internal/external rotation and horizontal abduction/adduction, whilst participants applied varying levels of joint torque. System identification techniques were used to quantify the mechanical properties of the shoulder joint at various levels of muscle contraction, including; stiffness, viscous damping, and inertia parameters, natural frequency, and damping parameter. We compared the shoulder mechanical properties between dominant and non-dominant limbs.

RESULTS

The mean stiffness increased 4.8 times in external rotation, and 6.25 times in internal rotation as a result of contraction to 8 Nm. It increased 2.8 times in adduction and 4.6 times in abduction as a result of contraction to 16 Nm. The mean viscous damping increased 3 times in external rotation, 2.8 times in internal rotation as a result of contraction to 8 Nm. It increased 1.6 times in adduction and 2.25 times in abduction as a result of contraction to 16 Nm.

CONCLUSION

Joint stiffness, viscous damping and natural frequency all increased with the level of shoulder contraction torque, whereas the damping parameter remained unchanged. No differences were observed between dominant and non-dominant limbs.

SIGNIFICANCE

We have presented a method to characterize the mechanical properties of the shoulder complex during various activation states, which has application as a diagnostic and assessment tool for shoulder pathology.

摘要

目的

在本研究中,我们提出一种方法,用于在功能姿势下以两个自由度(内旋/外旋和水平外展/内收)量化肩关节的力学特性。

方法

我们使用定制的扰动机器人对15名健康参与者进行了实验。在内旋/外旋和水平外展/内收方向施加扰动,同时参与者施加不同水平的关节扭矩。使用系统识别技术来量化在不同肌肉收缩水平下肩关节的力学特性,包括:刚度、粘性阻尼、惯性参数、固有频率和阻尼参数。我们比较了优势侧和非优势侧肢体的肩部力学特性。

结果

收缩至8 Nm时,外旋方向的平均刚度增加了4.8倍,内旋方向增加了6.25倍。收缩至16 Nm时,内收方向增加了2.8倍,外展方向增加了4.6倍。收缩至8 Nm时,外旋方向的平均粘性阻尼增加了3倍,内旋方向增加了2.8倍。收缩至16 Nm时,内收方向增加了1.6倍,外展方向增加了2.25倍。

结论

关节刚度、粘性阻尼和固有频率均随肩部收缩扭矩水平的增加而增加,而阻尼参数保持不变。优势侧和非优势侧肢体之间未观察到差异。

意义

我们提出了一种在各种激活状态下表征肩部复合体力学特性的方法,该方法可作为肩部病理学的诊断和评估工具。

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