Analysis of joint stiffness of human posture in response to balance ability and limited sensory input during dynamic perturbation

A. Azaman, Shin-ichiroh Yamamoto
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引用次数: 1

Abstract

Joint stiffness causes posture movement restriction. However, how joint stiffness responds towards imbalance still remain unclear. The objective was to observe the relationship between the joint stiffness value with balance ability and the efficient amount of stiffness required to maintain posture sway. Moreover, the effects of limited sensory inputs were also discovered. The joint motion at different external perturbations was recorded when different sensory inputs were applied. The results showed that the measurements of joint stiffness displayed imbalance; whereby, less-balanced individuals produced a high stiffness value correlating with the functional reach test (FRT) score. Furthermore, the stiffness value at the joints produced a significant difference with different sensory conditions and when various perturbation frequencies were applied (p < 0.05). The stiffness ratio between joints was also obtained. This study had successfully acquired the correlation between joint stiffness with balance ability, sensory inputs and joint synergy which crucial to maintain the posture balance.
动态扰动下人体姿态关节刚度对平衡能力和有限感觉输入的响应分析
关节僵硬导致姿势运动受限。然而,关节刚度如何响应不平衡仍然不清楚。目的是观察关节刚度值与平衡能力和维持姿势摇摆所需的有效刚度之间的关系。此外,还发现了有限感官输入的影响。用不同的感官输入记录不同外部扰动下的关节运动。结果表明:关节刚度测量存在不平衡;因此,不平衡的个体产生了与功能伸展测试(FRT)分数相关的高刚度值。不同感官条件和不同扰动频率下,关节处的刚度值存在显著差异(p < 0.05)。得到了节点间的刚度比。本研究成功地获得了关节刚度与平衡能力、感觉输入和关节协同之间的关系,这对保持姿势平衡至关重要。
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