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A Vibrotactile and Plantar Force Measurement-Based Biofeedback System: Paving the Way towards Wearable Balance-Improving Devices

机译:基于振动和足底力测量的生物反馈系统:为可穿戴的平衡改善设备铺平道路

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Although biofeedback systems have been used to improve balance with success, they were confined to hospital training applications. Little attempt has been made to investigate the use of in-shoe plantar force measurement and wireless technology to turn hospital training biofeedback systems into wearable devices. This research developed a wearable biofeedback system which detects body sway by analyzing the plantar force and provides users with the corresponding haptic cues. The effects of this system were evaluated in thirty young and elderly subjects with simulated reduced foot sensation. Subjects performed a Romberg test under three conditions: (1) no socks, system turned-off; (2) wearing five layers of socks, system turned-off; (3) wearing five layers of socks, and system turned-on. Degree of body sway was investigated by computing the center of pressure (COP) movement measured by a floor-mounted force platform. Plantar tactile sensation was evaluated using a monofilament test. Wearing multiple socks significantly decreased the plantar tactile sensory input (p 0.05), and increased the COP parameters (p 0.017), indicating increased postural sway. After turning on the biofeedback system, the COP parameters decreased significantly (p 0.017). The positive results of this study should inspire future development of wearable plantar force-based biofeedback systems for improving balance in people with sensory deficits.
机译:尽管生物反馈系统已被用来改善成功的平衡,但它们仅限于医院培训应用。很少有人尝试研究使用鞋内足底压力测量和无线技术将医院训练的生物反馈系统变成可穿戴设备。这项研究开发了一种可穿戴的生物反馈系统,该系统可通过分析脚底力来检测人体晃动,并为用户提供相应的触觉提示。该系统的效果在模拟的足部感觉减退的30位年轻和老年受试者中进行了评估。受试者在以下三个条件下进行了Romberg测试:(1)没有袜子,系统关闭; (2)穿五层袜子,系统关闭; (3)穿五层袜子,并将系统打开。通过计算由落地式测力平台测得的压力中心(COP)运动来研究车身的摇摆程度。使用单丝试验评估足底触觉。穿多只袜子显着降低了足底触觉感觉输入(p <0.05),并增加了COP参数(p <0.017),表明姿势摇摆增加。打开生物反馈系统后,COP参数显着降低(p <0.017)。这项研究的积极结果应启发可穿戴式足底力为基础的生物反馈系统的未来发展,以改善感官缺陷患者的平衡。

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