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基于头部位置的电触觉舌生物反馈的感觉补充系统用于平衡控制。

Sensory supplementation system based on electrotactile tongue biofeedback of head position for balance control.

作者信息

Vuillerme Nicolas, Pinsault Nicolas, Chenu Olivier, Demongeot Jacques, Payan Yohan, Danilov Yuri

机构信息

Laboratoire TIMC-IMAG, UMR UJF CNRS 5525, La Tronche, France.

出版信息

Neurosci Lett. 2008 Feb 6;431(3):206-10. doi: 10.1016/j.neulet.2007.11.049. Epub 2007 Dec 5.

Abstract

The present study aimed at investigating the effects of an artificial head position-based tongue-placed electrotactile biofeedback on postural control during quiet standing under different somatosensory conditions from the support surface. Eight young healthy adults were asked to stand as immobile as possible with their eyes closed on two Firm and Foam support surface conditions executed in two conditions of No-biofeedback and Biofeedback. In the Foam condition, a 6-cm thick foam support surface was placed under the subjects' feet to alter the quality and/or quantity of somatosensory information at the plantar sole and the ankle. The underlying principle of the biofeedback consisted of providing supplementary information about the head orientation with respect to gravitational vertical through electrical stimulation of the tongue. Centre of foot pressure (CoP) displacements were recorded using a force platform. Larger CoP displacements were observed in the Foam than Firm conditions in the two conditions of No-biofeedback and Biofeedback. Interestingly, this destabilizing effect was less accentuated in the Biofeedback than No-biofeedback condition. In accordance with the sensory re-weighting hypothesis for balance control, the present findings evidence that the availability of the central nervous system to integrate an artificial head orientation information delivered through electrical stimulation of the tongue to limit the postural perturbation induced by alteration of somatosensory input from the support surface.

摘要

本研究旨在探讨基于人工头部位置的舌部放置式电触觉生物反馈在不同躯体感觉条件下(从支撑面获取的感觉信息)对安静站立时姿势控制的影响。八名年轻健康成年人被要求在闭眼状态下尽可能保持静止站立,分别在无生物反馈和生物反馈两种条件下,在两种支撑面条件(坚硬支撑面和泡沫支撑面)上进行测试。在泡沫支撑面条件下,在受试者脚下放置一个6厘米厚的泡沫支撑面,以改变足底和脚踝处躯体感觉信息的质量和/或数量。生物反馈的基本原理是通过对舌头进行电刺激,提供有关头部相对于重力垂直方向的方位的补充信息。使用测力平台记录足压力中心(CoP)的位移。在无生物反馈和生物反馈这两种条件下,均观察到在泡沫支撑面条件下的CoP位移比在坚硬支撑面条件下更大。有趣的是,与无生物反馈条件相比,这种使平衡不稳定的效应在生物反馈条件下不那么明显。根据平衡控制的感觉重新加权假说,本研究结果证明,中枢神经系统能够整合通过对舌头进行电刺激传递的人工头部方位信息,以限制由支撑面躯体感觉输入改变引起的姿势扰动。

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