首页> 外文会议>2014 IEEE Conference on Biomedical Engineering and Sciences >Improving postural control using a portable plantar pressure-based vibrotactile biofeedback system
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Improving postural control using a portable plantar pressure-based vibrotactile biofeedback system

机译:使用基于便携式足底压力的触觉生物反馈系统改善姿势控制

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A portable and lightweight vibrotactile biofeedback system is introduced here which acts as a real-time balance aid. The biofeedback system provided users with vibrotactile stimulation based on changes in plantar pressure distribution. An experiment was conducted to investigate its effectiveness in improvement of postural control. A Romberg test was performed requesting the subjects to stand as still as possible, while the degree of body sway was measured by a force platform. Two young healthy subjects and one older healthy subject participated in the study. A wearing wool socks and eye-closed intervention was used to simulate reduced sensory input, and the effect of provision of vibrotactile feedback was studied. The experiment was conducted in 3 conditions: 1) bare feet, eyes open (baseline), 2) wearing 5 layers of wool socks, eyes closed, 3) wearing 5 layers of socks, eyes closed, with biofeedback system turned-on. The range, root mean square (RMS) and coefficient of variance (CV) of center of pressure (COP) were studied. Results indicated a significant increase of postural sway after the intervention of reducing sensory inputs, and a considerable reduction of postural sway upon using the vibrotactile feedback reminding body motion in four directions. These results suggested that vibrotactile biofeedback system is effective in improving postural control of subjects. Future studies about the effects of this biofeedback system on dynamic balance control and gait are needed.
机译:此处介绍了一种轻便的轻触动生物反馈系统,可作为实时平衡辅助设备。该生物反馈系统基于足底压力分布的变化为用户提供了触觉刺激。进行了实验以研究其在改善姿势控制方面的有效性。进行了Romberg测试,要求受试者尽可能站立不动,而用力平台测量身体的摇摆程度。两名年轻健康受试者和一名老年健康受试者参加了研究。使用穿羊毛袜和闭眼干预来模拟减少的感觉输入,并研究提供触觉反馈的效果。实验在以下3种条件下进行:1)赤脚,睁眼(基线),2)穿5层羊毛袜,闭眼,3)穿5层袜子,眼闭,并启用了生物反馈系统。研究了压力中心(COP)的范围,均方根(RMS)和方差系数(CV)。结果表明,在减少感官输入的干预之后,姿势摆动会显着增加,而在使用震动触觉反馈提醒身体在四个方向上运动时,姿势摆动会显着减少。这些结果表明,触觉生物反馈系统在改善受试者的姿势控制方面是有效的。需要对该生物反馈系统对动态平衡控制和步态的影响进行进一步研究。

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