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皮质网络拓扑的皮质下影响与功能处理层次结构一致。

Subcortical influences on the topology of cortical networks align with functional processing hierarchies.

机构信息

Department of Diagnostic and Interventional Neuroradiology, Klinikum R.d.Isar, Technical University Munich, Ismaninger Str. 22, Munich 81675, Germany.

Department of Diagnostic and Interventional Neuroradiology, Klinikum R.d.Isar, Technical University Munich, Ismaninger Str. 22, Munich 81675, Germany.

出版信息

Neuroimage. 2023 Dec 1;283:120417. doi: 10.1016/j.neuroimage.2023.120417. Epub 2023 Oct 20.

Abstract

fMRI of the human brain reveals spatiotemporal patterns of functional connectivity (FC), forming distinct cortical networks. Lately, subcortical contributions to these configurations are receiving renewed interest, but investigations rarely focus explicitly on their effects on cortico-cortical FC. Here, we employ a straightforward multivariable approach and graph-theoretic tools to assess subcortical impact on topological features of cortical networks. Given recent evidence showing that structures like the thalamus and basal ganglia integrate input from multiple networks, we expect increased segregation between cortical networks after removal of subcortical effects on their FC patterns. We analyze resting state data of young and healthy participants (male and female; N = 100) from the human connectome project. We find that overall, the cortical network architecture becomes less segregated, and more integrated, when subcortical influences are accounted for. Underlying these global effects are the following trends: 'Transmodal' systems become more integrated with the rest of the network, while 'unimodal' networks show the opposite effect. For single nodes this hierarchical organization is reflected by a close correspondence with the spatial layout of the principal gradient of FC (Margulies et al., 2016). Lastly, we show that the limbic system is significantly less coherent with subcortical influences removed. The findings are validated in a (split-sample) replication dataset. Our results provide new insight regarding the interplay between subcortex and cortical networks, by putting the integrative impact of subcortex in the context of macroscale patterns of cortical organization.

摘要

人类大脑的 fMRI 揭示了功能连接(FC)的时空模式,形成了独特的皮质网络。最近,皮质下结构对这些结构的贡献重新引起了人们的兴趣,但研究很少明确关注它们对皮质间 FC 的影响。在这里,我们采用了一种简单的多变量方法和图论工具来评估皮质下结构对皮质网络拓扑特征的影响。鉴于最近的证据表明,丘脑和基底神经节等结构整合了来自多个网络的输入,我们预计在去除皮质下对其 FC 模式的影响后,皮质网络之间的分离会增加。我们分析了人类连接组计划中年轻健康参与者(男性和女性;N=100)的静息状态数据。我们发现,总的来说,当考虑到皮质下的影响时,皮质网络的结构变得不那么分离,而更加整合。在这些全局效应的背后是以下趋势:“跨模态”系统与网络的其余部分更加整合,而“单模态”网络则表现出相反的效果。对于单个节点,这种层次结构组织反映在与 FC 的主梯度空间布局的密切对应上(Margulies 等人,2016 年)。最后,我们表明,当去除皮质下的影响时,边缘系统与皮质下的一致性显著降低。在(样本分割)复制数据集上验证了这些发现。我们的结果通过将皮质下的整合影响置于皮质组织的宏观模式背景下,为皮质下和皮质网络之间的相互作用提供了新的见解。

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