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去甲肾上腺素系统在认知控制过程中表现出信息内容特异性特征——来自 EEG 和瞳孔反应的证据。

The norepinephrine system shows information-content specific properties during cognitive control - Evidence from EEG and pupillary responses.

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine of the TU Dresden, Germany; MS Centre Dresden, 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. 2017 Apr 1;149:44-52. doi: 10.1016/j.neuroimage.2017.01.036. Epub 2017 Jan 24.

Abstract

The ability to exert cognitive control is a major function of the prefrontal cortex, the efficiency of which depends on the phasic release of norepinephrine (NE) at particular time points. However, different aspects of information are simultaneously processed at any given moment. This raises the question of whether the norepinephrine system is also capable of specifically modulating selected aspects of all ongoing information processing, especially when several of those processes are carried out by the same functional neuroanatomical structure at the same time. We examine this question in humans using a flanker paradigm by integrating neurophysiological (EEG) and pupil diameter data using novel signal processing techniques including Residue Iteration Decomposition (RIDE) and source localization. We show that during conflict monitoring, motor response-related processes are more strongly modulated by the NE system than stimulus-related processes or central decision processes between stimulus and response. This was the case even though these processes occurred at the same time point and were mediated by overlapping medial frontal cortical structures. The results indicate that the NE system exerts specific modulatory effects for different informational contents that are simultaneously processed in the medial frontal cortex.

摘要

发挥认知控制的能力是前额叶皮层的主要功能,其效率取决于去甲肾上腺素(NE)在特定时间点的阶段性释放。然而,在任何给定的时刻,信息的不同方面都在同时被处理。这就提出了一个问题,即去甲肾上腺素系统是否也能够专门调节所有正在进行的信息处理的特定方面,特别是当这些过程中的几个过程同时由同一个功能神经解剖结构执行时。我们使用一种侧翼范式在人类中检验了这个问题,该范式通过使用包括残差迭代分解(RIDE)和源定位在内的新信号处理技术整合了神经生理学(EEG)和瞳孔直径数据。我们表明,在冲突监测期间,运动反应相关的过程比刺激相关的过程或刺激与反应之间的中枢决策过程受到 NE 系统更强的调节。即使这些过程发生在同一时间点,并且由重叠的额内侧皮质结构介导,也是如此。这些结果表明,NE 系统对同时在额内侧皮质中处理的不同信息内容施加特定的调节作用。

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