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用于周围神经病变步态康复的可穿戴触觉反馈系统的初步生物力学评估

Initial biomechanical evaluation of wearable tactile feedback system for gait rehabilitation in peripheral neuropathy.

作者信息

McKinney Zach, Heberer Kent, Fowler Eileen, Greenberg Marcia, Nowroozi Bryan, Grundfest Warren

机构信息

UCLA Center for Advanced Surgical and Interventional Technology (CASIT).

UCLA Kameron Gait and Motion Analysis Laboratory.

出版信息

Stud Health Technol Inform. 2014;196:271-7.

Abstract

Peripheral neuropathy (PN) is a significant public health concern, resulting in abnormal gait biomechanics, diminished postural stability, and increased risk of falls. A wearable tactile feedback system previously developed for sensory augmentation of prosthetic limbs has been adapted for individuals with PN and evaluated in a pilot group of 4 participants with idiopathic bilateral PN, as well as one with Charcot-Marie-Tooth Disease. Participants were assessed both for their abilities to perceive tactile stimuli, and for the effect of tactile biofeedback on their gait. Preliminary data indicate that most participants could localize tactile stimuli and make meaningful modifications to their gait in real time, but that the effect of feedback on gait was highly variable from subject to subject, demanding further investigation.

摘要

周围神经病变(PN)是一个重大的公共卫生问题,会导致步态生物力学异常、姿势稳定性下降以及跌倒风险增加。先前为假肢的感觉增强而开发的可穿戴触觉反馈系统已被应用于患有PN的个体,并在一个由4名特发性双侧PN患者以及1名夏科-马里-图斯病患者组成的试点小组中进行了评估。研究人员对参与者感知触觉刺激的能力以及触觉生物反馈对其步态的影响进行了评估。初步数据表明,大多数参与者能够定位触觉刺激并实时对其步态做出有意义的改变,但反馈对步态的影响在个体之间差异很大,需要进一步研究。

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