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自闭症谱系障碍中脑结构协变网络拓扑对称性的微妙改变:来自 ENIGMA 联盟 43 个数据集的证据。

Subtly altered topological asymmetry of brain structural covariance networks in autism spectrum disorder across 43 datasets from the ENIGMA consortium.

机构信息

Department of Language & Genetics, Max Planck Institute for Psycholinguistics, Nijmegen, The Netherlands.

Department of Cognitive Neuroscience, Donders Institute for Brain, Cognition and Behaviour, Donders Centre for Cognitive Neuroimaging, Radboud University Medical Centre, Nijmegen, The Netherlands.

出版信息

Mol Psychiatry. 2022 Apr;27(4):2114-2125. doi: 10.1038/s41380-022-01452-7. Epub 2022 Feb 8.

Abstract

Small average differences in the left-right asymmetry of cerebral cortical thickness have been reported in individuals with autism spectrum disorder (ASD) compared to typically developing controls, affecting widespread cortical regions. The possible impacts of these regional alterations in terms of structural network effects have not previously been characterized. Inter-regional morphological covariance analysis can capture network connectivity between different cortical areas at the macroscale level. Here, we used cortical thickness data from 1455 individuals with ASD and 1560 controls, across 43 independent datasets of the ENIGMA consortium's ASD Working Group, to assess hemispheric asymmetries of intra-individual structural covariance networks, using graph theory-based topological metrics. Compared with typical features of small-world architecture in controls, the ASD sample showed significantly altered average asymmetry of networks involving the fusiform, rostral middle frontal, and medial orbitofrontal cortex, involving higher randomization of the corresponding right-hemispheric networks in ASD. A network involving the superior frontal cortex showed decreased right-hemisphere randomization. Based on comparisons with meta-analyzed functional neuroimaging data, the altered connectivity asymmetry particularly affected networks that subserve executive functions, language-related and sensorimotor processes. These findings provide a network-level characterization of altered left-right brain asymmetry in ASD, based on a large combined sample. Altered asymmetrical brain development in ASD may be partly propagated among spatially distant regions through structural connectivity.

摘要

与典型发育对照组相比,自闭症谱系障碍(ASD)个体的大脑皮质厚度左右不对称存在微小的平均差异,影响广泛的皮质区域。这些区域变化在结构网络效应方面的可能影响以前尚未确定。区域间形态协方差分析可以在宏观尺度上捕捉不同皮质区域之间的网络连接。在这里,我们使用来自 1455 名 ASD 患者和 1560 名对照者的皮质厚度数据,来自 ENIGMA 联盟 ASD 工作组的 43 个独立数据集,使用基于图论的拓扑度量来评估个体内结构协变网络的半球不对称性。与对照组中小世界结构的典型特征相比,ASD 样本显示出涉及梭状回、额中回和内侧眶额皮质的网络平均不对称性显著改变,涉及 ASD 中相应的右半球网络的随机化程度更高。一个涉及额上回的网络显示右半球随机化程度降低。基于与荟萃分析的功能神经影像学数据的比较,改变的连接不对称性特别影响了执行功能、语言相关和感觉运动过程的网络。这些发现基于一个大型的联合样本,为 ASD 中的左右脑不对称改变提供了网络水平的特征描述。ASD 中左右脑发育的改变可能部分通过结构连接在空间上遥远的区域之间传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8b8/9126820/6032ea8d64eb/41380_2022_1452_Fig1_HTML.jpg

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