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提供实时压力信息的振动触觉生物反馈对慢性卒中患者静态平衡能力和体重分布对称指数的影响

Effects of Vibrotactile Biofeedback Providing Real-Time Pressure Information on Static Balance Ability and Weight Distribution Symmetry Index in Patients with Chronic Stroke.

作者信息

Kim Ho, Kim Hongjun, Shin Won-Seob

机构信息

Department of Physical Therapy, Graduate School of Health and Medicine, Daejeon University, Daejeon 34520, Korea.

Department of Computer Engineering, Daejeon University, Daejeon 34520, Korea.

出版信息

Brain Sci. 2022 Mar 7;12(3):358. doi: 10.3390/brainsci12030358.

Abstract

Training with visual and auditory biofeedback, in patients with stroke, improved balance ability and asymmetric posture. We developed a new biofeedback training device to prevent falls and improve balance ability in patients with stroke. This device corrects motion errors by collecting the pressure information of patients in real-time. This randomized crossover study aimed to investigate the effect of this biofeedback training on the static balance ability and weight distribution symmetry index in 24 patients with chronic stroke. Pressure sensor-based vibrotactile biofeedback, visual biofeedback providing posture information, and standing without biofeedback were randomly applied for 1 d each with 24 h washout intervals to minimize adaptation. The static balance ability was measured for each biofeedback training type, and the weight distribution symmetry index was calculated using the collected weight-bearing rate data. The static balance ability and weight distribution symmetry index differed significantly according to the type of biofeedback training used. Post-hoc analysis revealed significant differences in the order of newly developed vibrotactile biofeedback, visual biofeedback, and standing without biofeedback. These findings provide evidence that pressure sensor-based vibrotactile biofeedback improves static balance ability and weight support rates by proposing better intervention for patients with chronic stroke in the clinical environment.

摘要

对中风患者进行视觉和听觉生物反馈训练可改善平衡能力和不对称姿势。我们研发了一种新型生物反馈训练设备,以预防中风患者跌倒并提高其平衡能力。该设备通过实时收集患者的压力信息来纠正运动误差。这项随机交叉研究旨在调查这种生物反馈训练对24例慢性中风患者静态平衡能力和体重分布对称指数的影响。基于压力传感器的振动触觉生物反馈、提供姿势信息的视觉生物反馈以及无生物反馈站立,每种方式各应用1天,间隔24小时洗脱期以尽量减少适应性影响。对每种生物反馈训练类型测量静态平衡能力,并使用收集到的负重率数据计算体重分布对称指数。静态平衡能力和体重分布对称指数因所使用的生物反馈训练类型而异。事后分析显示,新研发的振动触觉生物反馈、视觉生物反馈和无生物反馈站立的顺序存在显著差异。这些发现提供了证据,表明基于压力传感器的振动触觉生物反馈通过在临床环境中为慢性中风患者提供更好的干预措施,可改善静态平衡能力和体重支撑率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fab0/8946531/09662ff94889/brainsci-12-00358-g001.jpg

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