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经颅直流电刺激对固有功能连接的动态调制。

Dynamic modulation of intrinsic functional connectivity by transcranial direct current stimulation.

机构信息

Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

出版信息

J Neurophysiol. 2012 Dec;108(12):3253-63. doi: 10.1152/jn.00606.2012. Epub 2012 Sep 19.

Abstract

Transcranial direct current stimulation (tDCS) is a noninvasive brain stimulation technique capable of modulating cortical excitability and thereby influencing behavior and learning. Recent evidence suggests that bilateral tDCS over both primary sensorimotor cortices (SM1) yields more prominent effects on motor performance in both healthy subjects and chronic stroke patients than unilateral tDCS over SM1. To better characterize the underlying neural mechanisms of this effect, we aimed to explore changes in resting-state functional connectivity during both stimulation types. In a randomized single-blind crossover design, 12 healthy subjects underwent functional magnetic resonance imaging at rest before, during, and after 20 min of unilateral, bilateral, and sham tDCS stimulation over SM1. Eigenvector centrality mapping (ECM) was used to investigate tDCS-induced changes in functional connectivity patterns across the whole brain. Uni- and bilateral tDCS over SM1 resulted in functional connectivity changes in widespread brain areas compared with sham stimulation both during and after stimulation. Whereas bilateral tDCS predominantly modulated changes in primary and secondary motor as well as prefrontal regions, unilateral tDCS affected prefrontal, parietal, and cerebellar areas. No direct effect was seen under the stimulating electrode in the unilateral condition. The time course of changes in functional connectivity in the respective brain areas was nonlinear and temporally dispersed. These findings provide evidence toward a network-based understanding regarding the underpinnings of specific tDCS interventions.

摘要

经颅直流电刺激(tDCS)是一种非侵入性的脑刺激技术,能够调节皮质兴奋性,从而影响行为和学习。最近的证据表明,双侧 tDCS 刺激初级感觉运动皮层(SM1)比单侧 tDCS 刺激 SM1 对健康受试者和慢性中风患者的运动表现产生更显著的影响。为了更好地描述这种影响的潜在神经机制,我们旨在探索两种刺激类型下静息状态功能连接的变化。在一项随机单盲交叉设计中,12 名健康受试者在接受单侧、双侧和假 tDCS 刺激之前、期间和之后进行了 20 分钟的静息功能磁共振成像。特征向量中心性映射(ECM)用于研究 tDCS 诱导的整个大脑功能连接模式的变化。与假刺激相比,单侧和双侧 tDCS 刺激 SM1 导致大脑广泛区域的功能连接发生变化,无论是在刺激期间还是刺激后。而双侧 tDCS 主要调节初级和次级运动以及前额叶区域的变化,单侧 tDCS 则影响前额叶、顶叶和小脑区域。在单侧条件下,刺激电极下没有直接的影响。各脑区功能连接变化的时间过程是非线性和时间分散的。这些发现为特定 tDCS 干预的基础提供了基于网络的理解的证据。

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