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躯体感觉横向抑制过程调节运动反应抑制——一项 EEG 源定位研究。

Somatosensory lateral inhibition processes modulate motor response inhibition - an EEG source localization study.

机构信息

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

MS Centre Dresden, Faculty of Medicine of the TU Dresden, TU Dresden, Germany.

出版信息

Sci Rep. 2017 Jun 30;7(1):4454. doi: 10.1038/s41598-017-04887-z.

Abstract

Motor inhibitory control is a central executive function, but only recently the importance of perceptual mechanisms for these processes has been focused. It is elusive whether basic mechanisms governing sensory perception affect motor inhibitory control. We examine whether sensory lateral inhibition (LI) processes modulate motor inhibitory control using a system neurophysiological approach combining EEG signal decomposition with source localization methods in a somatosensory GO/NOGO task. The results show that inter-individual variations in the strength of LI effects predominantly affect processes when information needs to be integrated between cerebral hemispheres. If information needs to be integrated between hemispheres, strong sensory suppression will lead to more impulsive errors. Importantly, the neurophysiological data suggest that not purely perceptual or motor processes are affected. Rather, LI affects the response selection level and modulates processes of stimulus categorization. This is associated with activity modulations in the posterior parietal cortex. The results suggest that when sensory suppression is high and when information needs to be integrated across hemispheres, these processes are less efficient, which likely leads to worse motor inhibitory control. The results show how basis principles modulating perceptual processes affect subsequent motor inhibitory control processes.

摘要

运动抑制控制是一种中央执行功能,但直到最近,人们才关注感知机制对这些过程的重要性。目前还不清楚控制感觉知觉的基本机制是否会影响运动抑制控制。我们使用一种结合 EEG 信号分解与源定位方法的系统神经生理学方法,在体感 GO/NOGO 任务中检验了感觉侧抑制(LI)过程是否调节了运动抑制控制。结果表明,LI 效应强度的个体间差异主要影响需要在大脑半球之间整合信息的过程。如果需要在大脑半球之间整合信息,强烈的感觉抑制将导致更多冲动的错误。重要的是,神经生理学数据表明,受影响的不仅仅是纯粹的知觉或运动过程。相反,LI 影响了反应选择水平,并调节了刺激分类过程。这与后顶叶皮层的活动调制有关。结果表明,当感觉抑制较高且需要在大脑半球之间整合信息时,这些过程效率较低,这可能导致运动抑制控制较差。结果表明,调节知觉过程的基本原理如何影响随后的运动抑制控制过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2090/5493651/11d873843763/41598_2017_4887_Fig1_HTML.jpg

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