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心理负荷对抑制控制子过程的影响。

The impact of mental workload on inhibitory control subprocesses.

作者信息

Chmielewski Witold X, Mückschel Moritz, Stock Ann-Kathrin, Beste Christian

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine of the TU Dresden, Germany.

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine of the TU Dresden, Germany.

出版信息

Neuroimage. 2015 May 15;112:96-104. doi: 10.1016/j.neuroimage.2015.02.060. Epub 2015 Mar 6.

Abstract

The inhibition of inappropriate responses is a function known to rely on prefrontal cortex (PFC) functioning. Similarly, working memory processes are known to rely on the PFC. Even though these processes are usually closely intertwined and the functional neuroanatomy underlying these processes is largely overlapping, the influence of working memory load on inhibitory control process has remained largely elusive. In the current study, we therefore examine how response inhibition processes are modulated by working memory load. For this, we systematically increased the working memory load of participants by integrating mental rotation processes in a Go/NoGo paradigm. To examine the system neurophysiology of these processes in detail, and to examine whether there are differential effects of working memory load on distinct response inhibition subprocesses, we applied event-related potentials (ERPs) in combination with source localization techniques. The data shows that after exceeding a certain threshold, inhibitory control processes are aggravated by working memory load. The neurophysiological data paralleled the behavioral data. However, it suggests that distinguishable response inhibition subprocesses are differentially modulated by working memory load: Changes were evident in the NoGo-P3 amplitude but not in the NoGo-N2 amplitude. On a system level, this distinctive modulation of response inhibition subprocesses was related to differences in neural activity in the left inferior and middle frontal gyri. We show that inhibitory control processes are impaired when the working memory load surpasses a certain threshold. This, however only applies to situations in which the necessity of inhibitory control processes cannot be easily detected on the basis of perceptual factors.

摘要

抑制不适当反应是一种已知依赖前额叶皮质(PFC)功能的机能。同样,工作记忆过程也已知依赖前额叶皮质。尽管这些过程通常紧密相连,且这些过程背后的功能神经解剖学在很大程度上相互重叠,但工作记忆负荷对抑制控制过程的影响在很大程度上仍不明确。因此,在当前研究中,我们考察了反应抑制过程是如何受到工作记忆负荷调节的。为此,我们通过在Go/NoGo范式中整合心理旋转过程,系统地增加了参与者的工作记忆负荷。为了详细考察这些过程的系统神经生理学,并考察工作记忆负荷对不同反应抑制子过程是否存在差异影响,我们将事件相关电位(ERP)与源定位技术相结合应用。数据表明,在超过一定阈值后,抑制控制过程会因工作记忆负荷而加重。神经生理学数据与行为数据平行。然而,这表明可区分的反应抑制子过程受到工作记忆负荷的差异调节:在NoGo-P3波幅上有明显变化,但在NoGo-N2波幅上没有变化。在系统层面,反应抑制子过程的这种独特调节与左下额叶和额中回神经活动的差异有关。我们表明,当工作记忆负荷超过一定阈值时,抑制控制过程会受损。然而,这仅适用于基于感知因素难以轻易检测到抑制控制过程必要性的情况。

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