首页> 美国卫生研究院文献>Journal of Neural Transplantation >No Modulatory Effects when Stimulating the Right Inferior Frontal Gyrus with Continuous 6 Hz tACS and tRNS on Response Inhibition: A Behavioral Study
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No Modulatory Effects when Stimulating the Right Inferior Frontal Gyrus with Continuous 6 Hz tACS and tRNS on Response Inhibition: A Behavioral Study

机译:连续6 Hz tACS和tRNS刺激右下额回对反应抑制没有调节作用:一项行为研究

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摘要

Response inhibition is the cognitive process required to cancel an intended action. During that process, a “go” reaction is intercepted particularly by the right inferior frontal gyrus (rIFG) and presupplementary motor area (pre-SMA). After the commission of inhibition errors, theta activity (4–8 Hz) is related to the adaption processes. In this study, we intend to examine whether the boosting of theta activity by electrical stimulation over rIFG reduces the number of errors and the reaction times in a response inhibition task (Go/NoGo paradigm) during and after stimulation. 23 healthy right-handed adults participated in the study. In three separate sessions, theta tACS at 6 Hz, transcranial random noise (tRNS) as a second stimulation condition, and sham stimulation were applied for 20 minutes. Based on behavioral data, this study could not show any effects of 6 Hz tACS as well as full spectrum tRNS on response inhibition in any of the conditions. Since many findings support the relevance of the rIFG for response inhibition, this could mean that 6 Hz activity is not important for response inhibition in that structure. Reasons for our null findings could also lie in the stimulation parameters, such as the electrode montage or the stimulation frequency, which are discussed in this article in more detail. Sharing negative findings will have (1) positive impact on future research questions and study design and will improve (2) knowledge acquisition of noninvasive transcranial brain stimulation techniques.
机译:反应抑制是取消预期动作所需的认知过程。在该过程中,“走”反应尤其被右下额回(rIFG)和辅助运动区(SMA前)截获。抑制错误发生后,θ活性(4–8 Hz)与适应过程有关。在这项研究中,我们打算检查通过电刺激在rIFG上增强theta活性是否能减少刺激期间和刺激后的响应抑制任务(Go / NoGo范式)中的错误数和反应时间。 23名健康的右撇子成年人参加了这项研究。在三个独立的疗程中,以6 Hz的theta tACS,作为第二刺激条件的经颅随机噪声(tRNS)和假刺激施加20分钟。根据行为数据,本研究在任何情况下均未显示6 Hz tACS以及全光谱tRNS对反应抑制的任何影响。由于许多发现支持rIFG与反应抑制的相关性,这可能意味着6 Hz活性对于该结构中的反应抑制并不重要。我们无效发现的原因也可能在于刺激参数,例如电极蒙太奇或刺激频率,本文将对此进行详细讨论。共享负面结果将(1)对未来的研究问题和研究设计产生积极影响,并将改善(2)无创经颅脑刺激技术的知识获取。

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