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研究揭示丘脑皮层连通性在皮层功能组织出现过程中的作用转变
作者:小柯机器人 发布时间:2024/6/12 16:58:29

韩国成均馆大学Seok-Jun Hong研究组揭示了丘脑皮层连通性在皮层功能组织出现过程中的作用转变。2024年6月10日,《自然—神经科学》杂志在线发表了这项成果。

研究人员揭示了静息态丘脑皮层连通性的年龄依赖性差异,以探讨其在生命早期大规模功能网络出现过程中的作用,研究主要采用横断面方法,但也有纵向方法。研究表明,丘脑皮层在婴儿期的连通性反映了感觉运动网络的早期分化,以及受基因影响的轴突投射。到了儿童期,这种模式发生了变化,与突出网络建立了连接,同时外部和内部导向的功能系统脱钩。
 
利用生成网络模型进行的发育模拟证实了这些发现,证明丘脑连通性有助于发育成熟大脑的关键特征,如功能分离和感觉-联想轴,尤其是在12-18岁期间。该研究表明,丘脑在发育过程中的功能特化中扮演着重要角色,这对研究内部和外部处理受损的情况具有潜在意义。

据了解,皮层模式化原理是神经科学中一个长期存在的问题,但这一原理如何转化为人脑中的宏观功能特化在很大程度上仍是未知数。

附:英文原文

Title: A shifting role of thalamocortical connectivity in the emergence of cortical functional organization

Author: Park, Shinwon, Haak, Koen V., Oldham, Stuart, Cho, Hanbyul, Byeon, Kyoungseob, Park, Bo-yong, Thomson, Phoebe, Chen, Haitao, Gao, Wei, Xu, Ting, Valk, Sofie, Milham, Michael P., Bernhardt, Boris, Di Martino, Adriana, Hong, Seok-Jun

Issue&Volume: 2024-06-10

Abstract: The cortical patterning principle has been a long-standing question in neuroscience, yet how this translates to macroscale functional specialization in the human brain remains largely unknown. Here we examine age-dependent differences in resting-state thalamocortical connectivity to investigate its role in the emergence of large-scale functional networks during early life, using a primarily cross-sectional but also longitudinal approach. We show that thalamocortical connectivity during infancy reflects an early differentiation of sensorimotor networks and genetically influenced axonal projection. This pattern changes in childhood, when connectivity is established with the salience network, while decoupling externally and internally oriented functional systems. A developmental simulation using generative network models corroborated these findings, demonstrating that thalamic connectivity contributes to developing key features of the mature brain, such as functional segregation and the sensory-association axis, especially across 12–18 years of age. Our study suggests that the thalamus plays an important role in functional specialization during development, with potential impl

DOI: 10.1038/s41593-024-01679-3

Source: https://www.nature.com/articles/s41593-024-01679-3

期刊信息

Nature Neuroscience:《自然—神经科学》,创刊于1998年。隶属于施普林格·自然出版集团,最新IF:28.771
官方网址:https://www.nature.com/neuro/
投稿链接:https://mts-nn.nature.com/cgi-bin/main.plex