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电刺激前庭刺激电极电流密度对脑电流分布模式的影响:电极大小重要吗?

Impact of galvanic vestibular stimulation electrode current density on brain current flow patterns: Does electrode size matter?

机构信息

Research and Development, Soterix Medical, Woodbridge, NJ, United States of America.

Faculty of Medicine, School of Speech-Language and Audiology, University of Montreal, Montreal, QC, Canada.

出版信息

PLoS One. 2023 Feb 3;18(2):e0273883. doi: 10.1371/journal.pone.0273883. eCollection 2023.

Abstract

BACKGROUND

Galvanic vestibular stimulation (GVS) uses at least one electrode placed on the mastoid process with one or multiple placed over other head areas to stimulate the vestibular system. The exact electrode size used is not given much importance in the literature and has not been reported in several studies. In a previous study, we compared the clinical effects of using different electrode sizes (3 cm2 and 35 cm2) with placebo but with the same injected current, on postural control. We observed significant improvement using the smaller size electrode but not with the bigger size electrode. The goal of this study was to simulate the current flow patterns with the intent to shed light and potentially explain the experimental outcome.

METHODS

We used an ultra-high-resolution structural dataset and developed a model to simulate the application of different electrode sizes. We considered current flow in the brain and in the vestibular labyrinth.

RESULTS

Our simulation results verified the focality increase using smaller electrodes that we postulated as the main reason for our clinical effect. The use of smaller size electrodes in combination with the montage employed also result in higher induced electric field (E-field) in the brain.

CONCLUSIONS

Electrode size and related current density is a critical parameter to characterize any GVS administration as the choice impacts the induced E-field. It is evident that the higher induced E-field likely contributed to the clinical outcome reported in our prior study.

摘要

背景

电前庭刺激(GVS)使用至少一个放置在乳突上的电极,以及一个或多个放置在其他头部区域的电极来刺激前庭系统。文献中并没有给予电极尺寸的重要性,并且在几项研究中都没有报道。在之前的一项研究中,我们比较了使用不同电极尺寸(3cm2 和 35cm2)与安慰剂但相同注入电流对姿势控制的临床效果。我们观察到使用较小尺寸电极有显著改善,但使用较大尺寸电极则没有。本研究的目的是模拟电流流动模式,以期阐明和潜在解释实验结果。

方法

我们使用超高分辨率结构数据集并开发了一个模型来模拟不同电极尺寸的应用。我们考虑了电流在大脑和前庭迷路中的流动。

结果

我们的模拟结果验证了使用较小电极会增加聚焦性,这是我们假设的产生临床效果的主要原因。较小尺寸电极的使用与采用的电极组合也会导致大脑中更高的诱导电场(E-field)。

结论

电极尺寸和相关电流密度是描述任何 GVS 给药的关键参数,因为选择会影响诱导的 E-field。显然,更高的诱导 E-field可能有助于我们之前研究报告的临床结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94f4/9897567/72fbb6edfc3b/pone.0273883.g001.jpg

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