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Differentially categorized structural brain hubs are involved in different microstructural functional and cognitive characteristics and contribute to individual identification

机译:分类不同的结构性脑枢纽涉及不同的微结构功能和认知特征并有助于个体识别

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摘要

Very little is known regarding whether structural hubs of human brain networks that enable efficient information communication may be classified into different categories. Using three multimodal neuroimaging data sets, we construct individual structural brain networks and further identify hub regions based on eight widely used graph‐nodal metrics, followed by comprehensive characteristics and reproducibility analyses. We show the three categories of structural hubs in the brain network, namely, aggregated, distributed, and connector hubs. Spatially, these distinct categories of hubs are primarily located in the default‐mode system and additionally in the visual and limbic systems for aggregated hubs, in the frontoparietal system for distributed hubs, and in the sensorimotor and ventral attention systems for connector hubs. These categorized hubs exhibit various distinct characteristics to support their differentiated roles, involving microstructural organization, wiring costs, topological vulnerability, functional modular integration, and cognitive flexibility; moreover, these characteristics are better in the hubs than nonhubs. Finally, all three categories of hubs display high across‐session spatial similarities and act as structural fingerprints with high predictive rates (100%, 100%, and 84.2%) for individual identification. Collectively, we highlight three categories of brain hubs with differential microstructural, functional and, cognitive associations, which shed light on topological mechanisms of the human connectome.
机译:关于能否进行有效信息交流的人脑网络的结构中心是否可以分为不同类别,人们知之甚少。使用三个多模态神经影像数据集,我们构建了单独的结构性大脑网络,并基于八种广泛使用的图节点度量标准进一步识别了枢纽区域,然后进行了全面的特征和可重复性分析。我们展示了大脑网络中结构性集线器的三类,即聚合,分布式和连接器集线器。在空间上,这些不同类别的集线器主要位于默认模式系统中,此外还位于聚集式集线器的视觉和边缘系统中,分布式集线器的额顶系统中以及连接器集线器的感觉运动和腹侧注意系统中。这些分类的集线器展现出各种独特的特性来支持其不同的角色,包括微观组织,布线成本,拓扑脆弱性,功能模块集成和认知灵活性。而且,这些特征在集线器中比非集线器更好。最后,所有三种类别的集线器在整个会话期间都显示出很高的空间相似性,并且可以作为结构指纹,具有很高的个人识别率(100%,100%和84.2%)。总的来说,我们重点介绍了具有不同微结构,功能和认知关联的三类大脑中枢,这揭示了人类连接基因组的拓扑机制。

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