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自闭症中不典型的脑核心-边缘动力学。

Atypical core-periphery brain dynamics in autism.

作者信息

Roy Dipanjan, Uddin Lucina Q

机构信息

Cognitive Brain Dynamics Lab, National Brain Research Centre, Manesar, India.

Department of Psychology, University of Miami, Coral Gables, FL, USA.

出版信息

Netw Neurosci. 2021 Apr 27;5(2):295-321. doi: 10.1162/netn_a_00181. eCollection 2021.

Abstract

The intrinsic function of the human brain is dynamic, giving rise to numerous behavioral subtypes that fluctuate distinctively at multiple timescales. One of the key dynamical processes that takes place in the brain is the interaction between core-periphery brain regions, which undergoes constant fluctuations associated with developmental time frames. Core-periphery dynamical changes associated with macroscale brain network dynamics span multiple timescales and may lead to atypical behavior and clinical symptoms. For example, recent evidence suggests that brain regions with shorter intrinsic timescales are located at the periphery of brain networks (e.g., sensorimotor hand, face areas) and are implicated in perception and movement. On the contrary, brain regions with longer timescales are core hub regions. These hubs are important for regulating interactions between the brain and the body during self-related cognition and emotion. In this review, we summarize a large body of converging evidence derived from time-resolved fMRI studies in autism to characterize atypical core-periphery brain dynamics and how they relate to core and contextual sensory and cognitive profiles.

摘要

人类大脑的内在功能是动态的,会产生众多行为亚型,这些行为亚型在多个时间尺度上有明显波动。大脑中发生的关键动态过程之一是核心-边缘脑区之间的相互作用,这种相互作用会随着发育时间框架不断波动。与宏观脑网络动态相关的核心-边缘动态变化跨越多个时间尺度,可能导致非典型行为和临床症状。例如,最近的证据表明,内在时间尺度较短的脑区位于脑网络的边缘(如感觉运动手区、面部区域),与感知和运动有关。相反,时间尺度较长的脑区是核心枢纽区域。这些枢纽对于在自我相关认知和情感过程中调节大脑与身体之间的相互作用很重要。在这篇综述中,我们总结了大量来自自闭症时间分辨功能磁共振成像研究的一致证据,以描述非典型的核心-边缘脑动态以及它们与核心和情境感觉及认知特征的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5f1/8233106/a2f9be91641b/netn-05-295-g001.jpg

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