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定量评估肩部的三维关节位置觉。

Quantifying the three-dimensional joint position sense of the shoulder.

机构信息

School of Kinesiology, University of Michigan, Ann Arbor, MI, USA.

School of Kinesiology, University of Michigan, Ann Arbor, MI, USA; Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, USA.

出版信息

Hum Mov Sci. 2019 Oct;67:102508. doi: 10.1016/j.humov.2019.102508. Epub 2019 Aug 12.

Abstract

Joint position sense is important for performing activities of daily living and recreational activities. The objective of this study was to develop new insights into the proprioceptive capabilities of the shoulder using a novel virtual reality paradigm where participants actively recreated shoulder positions in all three dimensions. This allows for better identification of changes in joint position sense across different shoulder postures. Ten males and ten female healthy adults matched a cursor controlled by shoulder rotations calculated from motion capture tracking, to a target shoulder position presented in a virtual environment with the use of a virtual reality headset. Four elevation angles, three plane of elevation angles, and three rotation angles were investigated, totaling thirty-six angles that encompassed the range of motion of the shoulder. Joint position sense was enhanced as the elevation angle was increased, and further enhanced when the arm was more externally rotated and elevated. As elevation angle increased to 90°, joint position sense significantly increased. There was also a significant interaction of external rotation on elevation angle. As elevation angle increased, participants were more accurate when the arm was externally, but exhibited greater variability. These improvements in joint position sense are likely produced by increased tension in muscles and capsuloligamentous mechanoreceptors within the shoulder. As many sports and activities of daily living require joint position sense to complete a task, the ability to elevate and externally rotate is important for adequate shoulder proprioception and control.

摘要

关节位置感对于进行日常活动和娱乐活动很重要。本研究的目的是利用一种新的虚拟现实范式,为肩部的本体感受能力提供新的见解,参与者在该范式中主动在所有三个维度上重新创建肩部位置。这可以更好地识别不同肩部姿势下关节位置感的变化。10 名男性和 10 名女性健康成年人使用虚拟现实耳机,根据运动捕捉跟踪计算出的肩部旋转,将光标与虚拟环境中呈现的目标肩部位置匹配。共研究了四个提升角度、三个平面提升角度和三个旋转角度,共计 36 个角度涵盖了肩部的运动范围。随着提升角度的增加,关节位置感增强,当手臂外旋和提升时,关节位置感进一步增强。当提升角度增加到 90°时,关节位置感显著增加。外旋对提升角度也有显著的交互作用。随着提升角度的增加,当手臂外旋时,参与者的准确性更高,但变异性更大。这些关节位置感的改善可能是由于肩部肌肉和囊韧带机械感受器的张力增加所致。由于许多运动和日常活动都需要关节位置感来完成任务,因此能够抬高和外旋手臂对于足够的肩部本体感觉和控制很重要。

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