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高频经颅直流电刺激右侧颞顶联合区可调节健康成年人静息状态慢波的功率和相干性。

High-definition tDCS to the right temporoparietal junction modulates slow-wave resting state power and coherence in healthy adults.

机构信息

School of Psychology, Deakin University, Geelong, Victoria, Australia.

出版信息

J Neurophysiol. 2019 Oct 1;122(4):1735-1744. doi: 10.1152/jn.00338.2019. Epub 2019 Aug 28.

Abstract

The right temporoparietal junction (rTPJ) is a multisensory integration hub that is increasingly utilized as a target of stimulation studies exploring its rich functional network roles and potential clinical applications. While transcranial direct current stimulation (tDCS) is frequently employed in such studies, there is still relatively little known regarding its local and network neurophysiological effects, particularly at important nonmotor sites such as the rTPJ. The current study applied either anodal, cathodal, or sham high-definition tDCS to the rTPJ of 53 healthy participants and used offline EEG to assess the impacts of stimulation on resting state (eyes open and eyes closed) band power and coherence. Temporoparietal and central region delta power was increased after anodal stimulation (the latter trend only), whereas cathodal stimulation increased frontal region delta and theta power. Increased coherence between right and left temporoparietal regions was also observed after anodal stimulation. All significant effects occurred in the eyes open condition. These findings are discussed with reference to domain general and mechanistic theories of rTPJ function. Low-frequency oscillatory activity may exert long-range inhibitory network influences that enable switching between and integration of endogenous/exogenous processing streams. Through the novel use of high-definition transcranial direct current stimulation (tDCS) and EEG, we provide evidence that both anodal and cathodal stimulation of the right temporoparietal junction selectively modulate slow-wave power and coherence in distributed network regions of known relevance to proposed temporoparietal junction functionality. These results also provide direct evidence of the ability of tDCS to modulate oscillatory activity at a long-range network level, which may have explanatory power in terms of both neurophysiological and behavioral effects.

摘要

右侧颞顶联合区(rTPJ)是一个多感觉整合枢纽,越来越多地被用作刺激研究的目标,以探索其丰富的功能网络作用和潜在的临床应用。虽然经颅直流电刺激(tDCS)经常被用于此类研究,但对于其局部和网络神经生理效应,特别是在 rTPJ 等重要非运动部位,仍然知之甚少。本研究应用阳极、阴极或假刺激 rTPJ 对 53 名健康参与者进行高清晰度 tDCS,并使用离线 EEG 评估刺激对静息状态(睁眼和闭眼)带功率和相干性的影响。阳极刺激后,颞顶和中央区域的 delta 功率增加(后者趋势仅),而阴极刺激增加额区 delta 和 theta 功率。阳极刺激后,右侧和左侧颞顶区域之间的相干性也增加。所有显著效应均发生在睁眼状态。这些发现与 rTPJ 功能的一般领域和机制理论有关。低频振荡活动可能发挥长程抑制性网络影响,从而实现内源性/外源性加工流之间的切换和整合。通过新颖地使用高清晰度经颅直流电刺激(tDCS)和 EEG,我们提供了证据,表明右颞顶联合区的阳极和阴极刺激选择性地调节分布式网络区域的慢波功率和相干性,这些区域与提出的颞顶联合区功能相关。这些结果还提供了 tDCS 调节长程网络水平的振荡活动的直接证据,这在神经生理和行为效应方面可能具有解释力。

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