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首页> 外文期刊>The European Journal of Neuroscience >Strategic down-regulation of attentional resources as a mechanism of proactive response inhibition
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Strategic down-regulation of attentional resources as a mechanism of proactive response inhibition

机译:战略性下调注意力资源作为主动反应抑制的机制

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Efficiently avoiding inappropriate actions in a changing environment is central to cognitive control. One mechanism contributing to this ability is the deliberate slowing down of responses in contexts where full response cancellation might occasionally be required, referred to as proactive response inhibition. The present electroencephalographic (EEG) study investigated the role of attentional processes in proactive response inhibition in humans. To this end, we compared data from a standard stop-signal task, in which stop signals required response cancellation (stop-relevant'), to data where possible stop signals were task-irrelevant (stop-irrelevant'). Behavioral data clearly indicated the presence of proactive slowing in the standard stop-signal task. A novel single-trial analysis was used to directly model the relationship between response time and the EEG data of the go-trials in both contexts within a multilevel linear models framework. We found a relationship between response time and amplitude of the attention-related N1 component in stop-relevant blocks, a characteristic that was fully absent in stop-irrelevant blocks. Specifically, N1 amplitudes were lower the slower the response time, suggesting that attentional resources were being strategically down-regulated to control response speed. Drift diffusion modeling of the behavioral data indicated that multiple parameters differed across the two contexts, likely suggesting the contribution from independent brain mechanisms to proactive slowing. Hence, the attentional mechanism of proactive response control we report here might coexist with known mechanisms that are more directly tied to motoric response inhibition. As such, our study opens up new research avenues also concerning clinical conditions that feature deficits in proactive response inhibition.
机译:有效地避免在不断变化的环境中采取不当行为对于认知控制至关重要。促成此功能的一种机制是在有时需要完全消除响应的情况下故意放慢响应速度,这被称为主动响应抑制。当前的脑电图(EEG)研究调查了注意过程在人类主动反应抑制中的作用。为此,我们将标准停止信号任务中的数据(其中停止信号需要响应取消(停止相关))与可能的停止信号与任务无关(停止无关)的数据进行了比较。行为数据清楚地表明标准停止信号任务中存在主动减速。在多级线性模型框架内,使用新颖的单项试验分析在两种情况下直接对响应时间与试验的EEG数据之间的关系进行建模。我们发现响应时间和停止相关块中注意力相关的N1成分的振幅之间的关系,这是与停止无关的块中完全没有的特征。具体来说,N1幅度越低,响应时间越慢,这表明策略性地将注意力资源下调以控制响应速度。行为数据的漂移扩散建模表明,在两种情况下,多个参数有所不同,这可能表明独立的大脑机制对主动减慢的贡献。因此,我们在此报告的主动反应控制的注意机制可能与更直接与运动反应抑制相关的已知机制共存。因此,我们的研究开辟了新的研究途径,也涉及具有主动反应抑制缺陷的临床疾病。

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