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状态依赖性阴极经颅直流电刺激对皮质兴奋性的影响。

State-dependent effectiveness of cathodal transcranial direct current stimulation on cortical excitability.

机构信息

Department of Psychology, University of Milano-Bicocca, Milano, Italy; NeuroMi, Milan Center for Neuroscience, Milano, Italy.

School of Medicine and Surgery, University of Milano-Bicocca, Monza, Italy.

出版信息

Neuroimage. 2023 Aug 15;277:120242. doi: 10.1016/j.neuroimage.2023.120242. Epub 2023 Jun 20.

Abstract

The extensive use of transcranial direct current stimulation (tDCS) in experimental and clinical settings does not correspond to an in-depth understanding of its underlying neurophysiological mechanisms. In previous studies, we employed an integrated system of Transcranial Magnetic Stimulation and Electroencephalography (TMS-EEG) to track the effect of tDCS on cortical excitability. At rest, anodal tDCS (a-tDCS) over the right Posterior Parietal Cortex (rPPC) elicits a widespread increase in cortical excitability. In contrast, cathodal tDCS (c-tDCS) fails to modulate cortical excitability, being indistinguishable from sham stimulation. Here we investigated whether an endogenous task-induced activation during stimulation might change this pattern, improving c-tDCS effectiveness in modulating cortical excitability. In Experiment 1, we tested whether performance in a Visuospatial Working Memory Task (VWMT) and a modified Posner Cueing Task (mPCT), involving rPPC, could be modulated by c-tDCS. Thirty-eight participants were involved in a two-session experiment receiving either c-tDCS or sham during tasks execution. In Experiment 2, we recruited sixteen novel participants who performed the same paradigm but underwent TMS-EEG recordings pre- and 10 min post- sham stimulation and c-tDCS. Behavioral results showed that c-tDCS significantly modulated mPCT performance compared to sham. At a neurophysiological level, c-tDCS significantly reduced cortical excitability in a frontoparietal network likely involved in task execution. Taken together, our results provide evidence of the state dependence of c-tDCS in modulating cortical excitability effectively. The conceptual and applicative implications are discussed.

摘要

经颅直流电刺激(tDCS)在实验和临床环境中的广泛应用并没有对应对其潜在神经生理机制的深入理解。在之前的研究中,我们采用经颅磁刺激和脑电图(TMS-EEG)集成系统来跟踪 tDCS 对皮质兴奋性的影响。在静息状态下,对右后顶叶皮层(rPPC)进行阳极 tDCS(a-tDCS)会引起皮质兴奋性的广泛增加。相比之下,阴极 tDCS(c-tDCS)无法调节皮质兴奋性,与假刺激无区别。在这里,我们研究了刺激过程中内源性任务激活是否会改变这种模式,从而提高 c-tDCS 调节皮质兴奋性的有效性。在实验 1 中,我们测试了 rPPC 参与的视觉空间工作记忆任务(VWMT)和改良的 Posner 线索任务(mPCT)的表现是否可以通过 c-tDCS 来调节。38 名参与者参与了一项两阶段实验,在执行任务期间接受 c-tDCS 或假刺激。在实验 2 中,我们招募了 16 名新的参与者,他们执行了相同的范式,但在假刺激和 c-tDCS 前后进行了 TMS-EEG 记录。行为结果表明,与假刺激相比,c-tDCS 显著调节了 mPCT 的表现。在神经生理水平上,c-tDCS 显著降低了可能参与任务执行的额顶叶网络中的皮质兴奋性。总之,我们的结果提供了证据表明 c-tDCS 在有效调节皮质兴奋性方面具有状态依赖性。讨论了概念和应用的影响。

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