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Determining Level of Postural Control in Young Adults Using Force-Sensing Resistors

机译:使用力敏电阻确定年轻人的姿势控制水平

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摘要

A force-sensing platform (FSP), sensitive to changes of the postural control system was designed. The platform measured effects of postural perturbations in static and dynamic conditions. This paper describes the implementation of an FSP using force-sensing resistors as sensing elements. Real-time qualitative assessment utilized a rainbow color scale to identify areas with high force concentration. Postprocessing of the logged data provided end-users with quantitative measures of postural control. The objective of this research was to establish the feasibility of using an FSP to test and gauge human postural control. Tests were conducted in eye open and eye close states. Readings obtained were tested for repeatability using a one-way analysis of variance test. The platform gauged postural sway by measuring the area of distribution for the weighted center of applied pressure at the foot. A fuzzy clustering algorithm was applied to identify regions of the foot with repetitive pressure concentration. Potential application of the platform in a clinical setting includes monitoring rehabilitation progress of stability dysfunction. The platform functions as a qualitative tool for initial, on-the-spot assessment, and quantitative measure for postacquisition assessment on balance abilities.
机译:设计了一种对姿势控制系统的变化敏感的力感平台(FSP)。该平台在静态和动态条件下测量姿势扰动的影响。本文介绍了使用力感应电阻器作为感应元件的FSP的实现。实时定性评估利用彩虹色标来确定力集中度高的区域。记录数据的后处理为最终用户提供了姿势控制的定量方法。这项研究的目的是确定使用FSP测试和评估人体姿势控制的可行性。测试是在睁眼和闭眼状态下进行的。使用方差分析的单向分析测试获得的读数的可重复性。平台通过测量脚上施加压力的加权中心的分布区域来衡量姿势的摇摆。应用模糊聚类算法来识别重复压力集中的脚区域。该平台在临床环境中的潜在应用包括监测稳定性功能障碍的康复进程。该平台可作为定性工具,用于进行初始评估,现场评估以及对购置后评估能力进行定量评估。

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