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抽动抑制:阳极经颅直流电刺激可延长停止信号反应时间。

Pimping inhibition: Anodal tDCS enhances stop-signal reaction time.

作者信息

Friehs Maximilian A, Frings Christian

机构信息

Department of Cognitive Psychology.

出版信息

J Exp Psychol Hum Percept Perform. 2018 Dec;44(12):1933-1945. doi: 10.1037/xhp0000579. Epub 2018 Oct 8.

DOI:10.1037/xhp0000579
PMID:30299126
Abstract

The stop-signal task (SST) is assumed to reliably measure response inhibition; specifically, in this task participants sometimes have to withhold a response according to the onset of a sudden cue. The response-stopping process is estimated by a stochastic model that delivers the stop-signal reaction time (SSRT; Verbruggen & Logan, 2009), that is, the latency to inhibit prepotent responses. The right dorsolateral prefrontal cortex (rDLPFC) plays a key role in goal directed cognitive control in general and particularly an increased activation has been associated with better SST performance (that is with shorter SSRT). We stimulated the rDLPFC in a prepost design via transcranial DC stimulation (tDCS). A 9 cm2 anode was always positioned over the rDLPFC while the 35 cm2 cathode was placed over the left deltoid. We contrasted an anodal stimulation condition (that is assumed to enhance neural processing) with sham stimulation and expected an increase in inhibitory functions after anodal tDCS, as evidenced by a decrease in SSRT. In a sample of N = 56 healthy adults, we found a significant Time × tDCS-Condition interaction in the expected direction. Control analysis confirmed that the statistically significant decrease in SSRT after anodal tDCS was not due to generally faster reaction times. These results confirm the role of the rDLPFC for cognitive inhibition processes and further suggest that inhibition is not a fixed resource but depends on the current state of the PFC. (PsycINFO Database Record (c) 2018 APA, all rights reserved).

摘要

停止信号任务(SST)被认为能够可靠地测量反应抑制;具体而言,在该任务中,参与者有时必须根据突然出现的提示信号抑制反应。反应停止过程通过一个随机模型进行估计,该模型得出停止信号反应时间(SSRT;Verbruggen & Logan,2009),即抑制优势反应的潜伏期。一般来说,右侧背外侧前额叶皮层(rDLPFC)在目标导向的认知控制中起关键作用,特别是激活增强与更好的SST表现(即更短的SSRT)相关。我们通过经颅直流电刺激(tDCS)在前后设计中刺激rDLPFC。一个9平方厘米的阳极始终置于rDLPFC上方,而35平方厘米的阴极置于左侧三角肌上方。我们将阳极刺激条件(假定可增强神经加工)与假刺激进行对比,并预期阳极tDCS后抑制功能会增强,这表现为SSRT缩短。在一个由N = 56名健康成年人组成的样本中,我们发现了预期方向上显著的时间×tDCS条件交互作用。对照分析证实,阳极tDCS后SSRT在统计学上的显著降低并非由于总体反应时间变快。这些结果证实了rDLPFC在认知抑制过程中的作用,并进一步表明抑制不是一种固定资源,而是取决于前额叶皮层的当前状态。(PsycINFO数据库记录(c)2018美国心理学会,保留所有权利)

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