Force sensing resistors for monitoring proprioception response in rehabilitation routines

A. Gopalai, S. M. N. Arosha Senanayake
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引用次数: 1

Abstract

During rehabilitation routines for postural control, clinician use proprioception training involving wobble boards to help strengthen the proprioception. Wobble board routines are carried out for at least six weeks, subjects are required to perform certain motions on the boards which are targeted to improve proprioception. Subjects perform this tasks without (or with minimal) real-time feedback. A real-time system to monitor proprioception training, using a wobble board, was designed and tested. This work presents a force sensing platform, equipped with soft-computing methods to measure effects of destabilizing postural perturbations. Experiments were conducted to verify the system's ability to monitor and gauge subject's postural control via proprioception. The experimental set-up was observed at a frequency of three times a week for a duration of six weeks. Fuzzy clustering and area of sway analysis was used to determine the effects of training on subjects' postural control in Eyes Open (EO) and Eyes Close (EC) conditions. All data was tabulated and compared using one-way ANOVA to determine its statistical significance, with a false rejection ratio α = 0.05. The results of the experiment supported the suitability of the system for clinical applications pertaining to postural control improvements.
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用于监测康复程序本体感觉反应的力感电阻
在姿势控制的康复过程中,临床医生使用包括摆动板在内的本体感觉训练来帮助增强本体感觉。摇摆板的日常活动至少进行六周,受试者需要在板上进行特定的运动,以改善本体感觉。受试者在没有(或只有很少)实时反馈的情况下执行这些任务。设计并测试了一个利用摆动板监测本体感觉训练的实时系统。这项工作提出了一个力传感平台,配备了软计算方法来测量不稳定的姿势扰动的影响。实验验证了该系统通过本体感觉监测和测量受试者姿势控制的能力。实验设置以每周三次的频率进行观察,持续时间为六周。采用模糊聚类和摇摆面积分析来确定训练对受试者在睁眼和闭眼条件下的姿势控制的影响。将所有数据制成表格,采用单因素方差分析(one-way ANOVA)比较其统计学显著性,假拒绝率α = 0.05。实验结果支持了该系统在改善姿势控制方面的临床应用的适用性。
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