基于比例摆动的电触觉反馈可改善侧立平衡。

Proportional sway-based electrotactile feedback improves lateral standing balance.

作者信息

Raghav Hari Krishna V S, Kim Jeonghee, Chang Shuo-Hsiu, Choe Yoonsuck, Park Hangue

机构信息

Department of Computer Science and Engineering, Texas A&M University, College Station, TX, United States.

Department of Electronic Engineering, Department of Biomedical Engineering, and Department of Artificial Intelligence, Hanyang University, Seoul, Republic of Korea.

出版信息

Front Neurosci. 2024 Mar 18;18:1249783. doi: 10.3389/fnins.2024.1249783. eCollection 2024.

Abstract

INTRODUCTION

Plantar cutaneous augmentation is a promising approach in balance rehabilitation by enhancing motion-dependent sensory feedback. The effect of plantar cutaneous augmentation on balance has been mainly investigated in its passive form (e.g., textured insole) or on lower-limb amputees. In this study, we tested the effect of plantar cutaneous augmentation on balance in its active form (i.e., electrical stimulation) for individuals with intact limbs.

METHODS

Ten healthy subjects participated in the study and were instructed to maintain their balance as long as possible on the balance board, with or without electrotactile feedback evoked on the medial side of the heel, synched with the lateral board sway. Electrotactile feedback was given in two different modes: 1) Discrete-mode E-stim as the stimulation on/off by a predefined threshold of lateral board sway and 2) Proportional-mode E-stim as the stimulation frequency proportional to the amount of lateral board sway. All subjects were distracted from the balancing task by the n-back counting task, to test subjects' balancing capability with minimal cognitive involvement.

RESULTS

Proportional-mode E-stim, along with the n-back counting task, increased the balance time from 1.86 ± 0.03 s to 1.98 ± 0.04 s ( = 0.010). However, discrete-mode E-stim did not change the balance time ( = 0.669). Proportional-mode E-stim also increased the time duration per each swayed state ( = 0.035) while discrete-mode E-stim did not ( = 0.053).

DISCUSSION

These results suggest that proportional-mode E-stim is more effective than discrete-mode E-stim on improving standing balance. It is perhaps because the proportional electrotactile feedback better mimics the natural tactile sensation of foot pressure than its discrete counterpart.

摘要

引言

足底皮肤增强是一种通过增强运动相关感觉反馈来促进平衡康复的有前景的方法。足底皮肤增强对平衡的影响主要在其被动形式(如纹理鞋垫)或下肢截肢者中进行了研究。在本研究中,我们测试了足底皮肤增强的主动形式(即电刺激)对肢体健全个体平衡的影响。

方法

十名健康受试者参与了本研究,并被要求在平衡板上尽可能长时间地保持平衡,平衡板在有或没有与外侧板摆动同步的足跟内侧诱发的电触觉反馈的情况下进行。电触觉反馈以两种不同模式给出:1)离散模式电刺激,即根据外侧板摆动的预定义阈值进行刺激的开启/关闭;2)比例模式电刺激,即刺激频率与外侧板摆动量成比例。所有受试者通过n-back计数任务分散对平衡任务的注意力,以测试受试者在最小认知参与下的平衡能力。

结果

比例模式电刺激与n-back计数任务一起,将平衡时间从1.86±0.03秒增加到1.98±0.04秒(=0.010)。然而,离散模式电刺激并未改变平衡时间(=0.669)。比例模式电刺激还增加了每个摆动状态的持续时间(=0.035),而离散模式电刺激则没有(=0.053)。

讨论

这些结果表明,比例模式电刺激在改善站立平衡方面比离散模式电刺激更有效。这可能是因为比例电触觉反馈比其离散对应物更好地模拟了足部压力的自然触觉感觉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28d0/10982372/87ac96a6b7b1/fnins-18-1249783-g001.jpg

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