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行为与 tDCS 刺激部位的对齐诱导出最大反应:来自在线 tDCS 和 ERP 的证据。

Alignment of behaviour and tDCS stimulation site induces maximum response: evidence from online tDCS and ERP.

机构信息

Department of Neurophysiology, National Institute of Mental Health And Neuro Sciences (NIMHANS), Hosur Road, Bangalore, Karnataka, 560029, India.

Psychology, School of Social Sciences, Nanyang Technological University, Singapore, Singapore.

出版信息

Sci Rep. 2024 Aug 24;14(1):19715. doi: 10.1038/s41598-024-68691-2.

Abstract

tDCS modulates the activity of the neuronal networks to induce the desired behavioural changes. Two factors determine its effectiveness- (1) whether the network being stimulated is relevant to the task, and (2) if there is a scope for improvement in behavioral performance. To explore this, both dorsal (sub-lexical) and ventral (lexical) reading networks were stimulated (20 min, 2 mA) in 25 healthy young volunteers. Participants performed two reading tasks with different levels of lexical involvement: word fragment completion tasks (WCT) and word association tasks (WAT), while event-related potentials (ERPs) were recorded simultaneously. The study used a within-subject design over three sessions, comparing various electrode montages targeting the dorsal pathway's left inferior parietal lobule or the ventral reading pathway's left middle temporal lobule, as well as sham stimulation. The impact of tDCS sessions (dorsal, ventral, & sham) and task type (WCT & WAT) on priming effects (primed vs. unprimed) of behavioral performance (accuracy and reaction times), and ERP parameters (N400 amplitudes and latencies) were statistically analyzed.It was found that tDCS modulated the performance of WAT only (a task with a lower priming effect). The failure to modulate WCT (larger priming effect) indicated that tDCS was effective for conditions with room for improvement compared to a task where performance has reached the ceiling. Ventral stimulation enhanced accuracy in the WAT condition and shortened the N400 latency of the priming effect. In contrast, dorsal stimulation delayed the priming effect reaction time in the WAT condition and enhanced the N400 amplitude. To conclude, enhancement in performance due to tDCS occurs when the network (ventral) being stimulated aligns with the cognitive demands of the task and there is a scope for improvement.

摘要

tDCS 通过调节神经元网络的活动来诱导所需的行为改变。有两个因素决定了它的有效性:(1)被刺激的网络是否与任务相关,(2)行为表现是否有改进的空间。为了探索这一点,我们刺激了 25 名健康年轻志愿者的背侧(亚词汇)和腹侧(词汇)阅读网络(20 分钟,2 mA)。参与者在两个阅读任务中完成了不同程度的词汇参与:单词片段完成任务(WCT)和单词联想任务(WAT),同时记录事件相关电位(ERP)。该研究使用了一个三阶段的单因素组内设计,比较了针对背侧通路左侧下顶叶或腹侧阅读通路左侧颞中回的不同电极组合、假刺激的效果。tDCS 对行为表现(准确率和反应时间)和 ERP 参数(N400 幅度和潜伏期)的影响(刺激、假刺激)与任务类型(WCT 和 WAT)之间的关系进行了统计分析。结果发现,tDCS 仅调节了 WAT 的表现(一种具有较低启动效应的任务)。未能调节 WCT(更大的启动效应)表明,与表现已经达到上限的任务相比,tDCS 对有改进空间的条件有效。腹侧刺激提高了 WAT 条件下的准确性,并缩短了启动效应的 N400 潜伏期。相比之下,背侧刺激延迟了 WAT 条件下的启动效应反应时间,并增强了 N400 幅度。综上所述,当刺激的网络(腹侧)与任务的认知要求相匹配且存在改进空间时,tDCS 会提高表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0673/11344783/00d7c2041bf2/41598_2024_68691_Fig1_HTML.jpg

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