首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Noisy Galvanic Vestibular Stimulation Primarily Affects Otolith-Mediated Motion Perception
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Noisy Galvanic Vestibular Stimulation Primarily Affects Otolith-Mediated Motion Perception

机译:嘈杂的电流前庭刺激主要影响偏靠介导的运动感知

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摘要

Noisy galvanic vestibular stimulation (nGVS) has been shown to improve vestibular perception in healthy subjects. However, it is unclear whether both the semicircular canals (SCCs) and otolith organs contribute to this enhancement or is it confined to one of these structures. To elucidate this matter, nGVS amplitudes with optimal effect on postural control were determined in 12 healthy subjects during upright stance. These amplitudes were then applied during perceptual direction-recognition tasks in inter-aural translation (otolith-mediated perception) as well as yaw rotation with the head pitched forward 71 deg (SCC-mediated perception) and compared to sham stimulation. Nine out of 12 subjects showed significantly improved direction-recognition thresholds in the inter-aural translation task during nGVS compared to sham stimulation (p = 0.03; mean threshold reduction: 38.8%). Only 6 of 12 subjects showed mild improvements in the yaw rotation task during nGVS (p 0.05). In addition, elevated baseline thresholds during the inter-aural translation task significantly correlated with a larger magnitude of improvement (R = 0.72, p = 0.01). In conclusion, nGVS appears to primarily impact otolith-mediated perception while only mildly affecting the SCCs. Thus, this stimulation approach could be a complementary candidate to vestibular implants that are currently limited to SCC-mediated vestibular function. (C) 2018 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:已显示嘈杂的电常态刺激(NGV)以改善健康受试者的前庭感知。然而,目前尚不清楚半圆公司(SCC)和右侧器官是否有助于这种增强,或者局限于其中一个结构。为了阐明这件物质,在直立姿势期间在12个健康受试者中测定了对姿势对照的最佳影响的NGVS巨大。然后在感知方向识别任务中施加这些幅度在耳间翻译(卵醇介导的感知)以及偏航旋转的情况下,头部俯仰向前71°(SCC介导的感知)并与假刺激进行比较。与假刺激相比,12个受试者中有九个受试者在NGV期间显示出在NGV间的翻译任务中的方向识别阈值(P <= 0.03;平均阈值减少:38.8%)。在NGV期间只有6个受试者中只有6个受试者的偏航旋转任务中的温和改善(P&GT; 0.05)。另外,在闭合间的翻译任务期间的基线阈值升高,与更大的改进幅度显着相关(r = 0.72,p = 0.01)。总之,NGV似乎主要影响右右卵石介导的感知,同时只影响SCC。因此,这种刺激方法可以是前庭植入物的互补候选者,目前限于SCC介导的前庭功能。 (c)2018年IBRO。 elsevier有限公司出版。保留所有权利。

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