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Dynamic Balance Measurement and Quantitative Assessment Using Wearable Plantar-Pressure Insoles in a Pose-Sensed Virtual Environment

机译:在姿势感应虚拟环境中使用可穿戴式足底压力鞋垫进行动态平衡测量和定量评估

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摘要

The center of plantar pressure (COP) reflects the dynamic balance of subjects to a certain extent. In this study, wearable pressure insoles are designed, body pose measure is detected by the Kinect sensor, and a balance evaluation system is formulated. With the designed games for the interactive actions, the Kinect sensor reads the skeletal poses to judge whether the desired action is performed, and the pressure insoles simultaneously collect the plantar pressure data. The COP displacement and its speed are calculated to determine the body sway and the ability of balance control. Significant differences in the dispersion of the COP distribution of the 12 subjects have been obtained, indicating different balancing abilities of the examined subjects. A novel assessment process is also proposed in the paper, in which a correlation analysis is made between the de facto sit-to-stand (STS) test and the proposed method; the Pearson and Spearman correlations are also conducted, which reveal a significant positive correlation. Finally, four undergraduate volunteers with a right leg sports injury participate in the experiments. The experimental results show that the normal side and abnormal side have significantly different characters, suggesting that our method is effective and robust for balance measurements.
机译:足底压力中心(COP)在一定程度上反映了受试者的动态平衡。在这项研究中,设计了可穿戴的压力鞋垫,通过Kinect传感器检测了人体姿势测量,并制定了平衡评估系统。通过设计用于交互动作的游戏,Kinect传感器读取骨骼姿势来判断是否执行了所需的动作,并且压力鞋垫同时收集了足底压力数据。计算COP位移及其速度,以确定车身摇摆和平衡控制能力。已获得12位受试者的COP分布散布的显着差异,表明所检查受试者的平衡能力不同。本文还提出了一种新颖的评估过程,其中对实际的站立测试与所提出的方法进行了相关分析。皮尔森和斯皮尔曼相关性也进行了,这揭示了显着的正相关。最后,四名右腿运动损伤的大学生志愿者参加了实验。实验结果表明,正常侧和异常侧具有显着不同的特征,这表明我们的方法对于平衡测量是有效且可靠的。

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