Application of a system for measuring foot plantar pressure for evaluation of human mobility

E. Klimiec, B. Jasiewicz, K. Zaraska, J. Piekarski, P. Guzdek, G. Kolaszczynski
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Abstract

The paper presents evaluation of human mobility by gait analysis, carried out in natural conditions (outside laboratory). Foot plantar pressure is measured using a shoe insole with 8 sensors placed in different anatomical zones of the foot, and placed inside a sports footwear. Polarized PVDF foil is used as a sensor material. A wireless transmission system is used to transmit voltage values to the computer. Due to linear relationship between force and transducer voltage, energy released during walking in arbitrary units can be calculated as integral of the square of transducer voltage over time. Gait measurements have been done over the next few days on healthy person during normal walking and slow walking. Performed measurements allow determination of walking speed (number of steps per second), gait rhythm and manner of walking (applying force to inside versus outside part of the sole). It is found that switching from normal to slow walk increases gait energy by 25% while the pressure distribution across the anatomical regions of the foot remains unchanged. The results will be used for developing a programme for evaluation of patients with cardiac failure and future integration of actimetry with pulse and spirometry measurements.
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用于评估人体活动能力的足底压力测量系统的应用
本文介绍了在自然条件下(实验室外)通过步态分析对人体活动能力的评价。脚底压力是用装有8个传感器的鞋垫测量的,这些传感器被放置在脚的不同解剖区域,并被放置在运动鞋中。偏振PVDF箔用作传感器材料。无线传输系统用于将电压值传输到计算机。由于力与换能器电压呈线性关系,在任意单位行走时释放的能量可以计算为换能器电压随时间的平方的积分。在接下来的几天里,对正常行走和慢速行走的健康人进行了步态测量。完成的测量可以确定步行速度(每秒步数),步态节奏和步行方式(对鞋底内侧和外侧施加力)。研究发现,在足部解剖区域的压力分布保持不变的情况下,从正常行走切换到慢速行走可增加25%的步态能量。研究结果将用于制定心力衰竭患者的评估方案,以及未来将活动测量与脉搏和肺活量测量相结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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