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经颅直流电刺激中电流分布映射的不一致性。

Inconsistencies in mapping current distribution in transcranial direct current stimulation.

作者信息

Jwa Anita S, Goodman Jonathan S, Glover Gary H

机构信息

Stanford University Law School, Stanford, CA, United States.

Program in Biophysics, Stanford School of Medicine, Stanford, CA, United States.

出版信息

Front Neuroimaging. 2023 Jan 16;1:1069500. doi: 10.3389/fnimg.2022.1069500. eCollection 2022.

Abstract

INTRODUCTION

tDCS is a non-invasive neuromodulation technique that has been widely studied both as a therapy for neuropsychiatric diseases and for cognitive enhancement. However, recent meta-analyses have reported significant inconsistencies amongst tDCS studies. Enhancing empirical understanding of current flow in the brain may help elucidate some of these inconsistencies.

METHODS

We investigated tDCS-induced current distribution by injecting a low frequency current waveform in a phantom and . MR phase images were collected during the stimulation and a time-series analysis was used to reconstruct the magnetic field. A current distribution map was derived from the field map using Ampere's law.

RESULTS

The current distribution map in the phantom showed a clear path of current flow between the two electrodes, with more than 75% of the injected current accounted for. However, in brain, the results did evidence a current path between the two target electrodes but only some portion ( 25%) of injected current reached the cortex demonstrating that a significant fraction of the current is bypassing the brain and traveling from one electrode to the other external to the brain, probably due to conductivity differences in brain tissue types. Substantial inter-subject and intra-subject (across consecutive scans) variability in current distribution maps were also observed in human but not in phantom scans.

DISCUSSIONS

An current mapping technique proposed in this study demonstrated that much of the injected current in tDCS was not accounted for in human brain and deviated to the edge of the brain. These findings would have ramifications in the use of tDCS as a neuromodulator and may help explain some of the inconsistencies reported in other studies.

摘要

引言

经颅直流电刺激(tDCS)是一种非侵入性神经调节技术,作为神经精神疾病的治疗方法和认知增强手段都得到了广泛研究。然而,最近的荟萃分析报告了tDCS研究之间存在显著的不一致性。增强对大脑中电流流动的实证理解可能有助于阐明其中一些不一致性。

方法

我们通过在模型中注入低频电流波形来研究tDCS诱导的电流分布。在刺激过程中收集磁共振相位图像,并使用时间序列分析来重建磁场。利用安培定律从磁场图导出电流分布图。

结果

模型中的电流分布图显示了两个电极之间清晰的电流路径,注入电流的75%以上都通过该路径。然而,在大脑中,结果确实证明了两个目标电极之间存在电流路径,但只有一部分(25%)注入电流到达皮层,这表明很大一部分电流绕过大脑,在大脑外部从一个电极流向另一个电极,这可能是由于脑组织类型的电导率差异所致。在人体中也观察到电流分布图在受试者之间和受试者内部(连续扫描之间)存在很大差异,但在模型扫描中未观察到这种情况。

讨论

本研究中提出的电流映射技术表明,tDCS中注入的大部分电流在人脑中并未通过预期路径,而是偏向大脑边缘。这些发现将对tDCS作为神经调节工具的应用产生影响,并可能有助于解释其他研究中报告的一些不一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e0/10406311/908b95525175/fnimg-01-1069500-g0001.jpg

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