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The norepinephrine system affects specific neurophysiological subprocesses in the modulation of inhibitory control by working memory demands

机译:去甲肾上腺素系统通过工作记忆需求影响抑制性调节的特定神经生理子过程

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摘要

Inhibitory control processes are known to be modulated by working memory demands. However, the neurobiological mechanisms behind these modulations are inconclusive. One important system to consider in this regard is the locus coeruleus (LC) norepinephrine (NE) system. In the current study the role of the LC‐NE system by means of pupil diameter recordings that are integrated with neurophysiological (EEG) and source localization data were examined. A combined mental‐rotation Go/Nogo task was used. The results show that increases in working memory load complicate response inhibition processes. On a neurophysiological level these effects were reflected by specific modulations in event‐related potentials (ERPs) reflecting motor inhibition processes (i.e., Nogo‐P3). Attentional selection processes (reflected by the P1 and N1) as well as pre‐motor inhibition or conflict monitoring processes (reflected by the Nogo‐N2) were not affected. Activity of the LC‐NE systems, as indexed by the pupil diameter data, predicted neurophysiological processes selectively in the Nogo‐P3 time range. Source localization analyses suggest that this modulation occurs in the right middle and inferior frontal gyrus. The study provides evidence that the LC‐NE system is an important neurobiological system modulating the effects of working memory load on response inhibition processes. More specifically, it modulates a subset of dissociable cognitive processes that are related to prefrontal cortical regions. . ©
机译:抑制性控制过程已知是通过工作记忆需求来调节的。但是,这些调节背后的神经生物学机制尚无定论。在这方面要考虑的一个重要系统是蓝斑去甲肾上腺素(NE)系统。在当前的研究中,通过与神经生理学(EEG)和源定位数据集成的瞳孔直径记录,研究了LC-NE系统的作用。使用了组合的精神旋转Go / Nogo任务。结果表明,工作存储器负载的增加使响应抑制过程复杂化。在神经生理学水平上,这些作用通过事件相关电位(ERP)的特定调节反映出来,反映了运动抑制过程(即Nogo-P3)。注意选择过程(由P1和N1反映)以及运动前抑制或冲突监测过程(由Nogo-N2反映)不受影响。通过瞳孔直径数据索引的LC-NE系统的活动在Nogo-P3时间范围内选择性预测了神经生理过程。来源定位分析表明,这种调制发生在右中下额回。该研究提供的证据表明,LC-NE系统是重要的神经生物学系统,可调节工作记忆负荷对反应抑制过程的影响。更具体地说,它调节与前额叶皮层区域有关的可分离的认知过程的子集。 。 ©

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