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The Development of Hub Architecture in the Human Functional Brain Network

机译:人类功能性大脑网络中集线器架构的发展

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Functional hubs are brain regions that play a crucial role in facilitating communication among parallel, distributed brain networks. The developmental emergence and stability of hubs, however, is not well understood. The current study used measures of network topology drawn from graph theory to investigate the development of functional hubs in 99 participants, 10-20 years of age. We found that hub architecture was evident in late childhood and was stable from adolescence to early adulthood. Connectivity between hub and non-hub ("spoke") regions, however, changed with development. From childhood to adolescence, the strength of connections between frontal hubs and cortical and subcortical spoke regions increased. From adolescence to adulthood, hub-spoke connections with frontal hubs were stable, whereas connectivity between cer-ebellar hubs and cortical spoke regions increased. Our findings suggest that a developmentally stable functional hub architecture provides the foundation of information flow in the brain, whereas connections between hubs and spokes continue to develop, possibly supporting mature cognitive function.
机译:功能枢纽是大脑区域,在促进并行的分布式大脑网络之间的交流中起着至关重要的作用。但是,人们对集线器的发展性和稳定性还知之甚少。当前的研究使用从图论中得出的网络拓扑措施来调查功能集线器在10至20岁年龄段的99名参与者中的发展。我们发现,轮毂架构在儿童晚期很明显,并且从青春期到成年初期都很稳定。但是,集线器和非集线器(“分支”)区域之间的连接性随开发而改变。从儿童期到青春期,额叶中心与皮质和皮质下辐条区之间的连接强度增加。从青春期到成年,与前枢纽的枢纽辐状连接稳定,而小脑枢纽与皮质辐条区域之间的连通性增加。我们的发现表明,开发稳定的功能枢纽体系结构为大脑中的信息流提供了基础,而枢纽和辐条之间的连接不断发展,可能支持成熟的认知功能。

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