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人类大脑皮层的微观结构不对称性。

Microstructural asymmetry in the human cortex.

机构信息

Otto Hahn Research Group Cognitive Neurogenetics, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

International Max Planck Research School on Neuroscience of Communication: Function, Structure, and Plasticity (IMPRS NeuroCom), Leipzig, Germany.

出版信息

Nat Commun. 2024 Nov 22;15(1):10124. doi: 10.1038/s41467-024-54243-9.

Abstract

The human cerebral cortex shows hemispheric asymmetry, yet the microstructural basis of this asymmetry remains incompletely understood. Here, we probe layer-specific microstructural asymmetry using one post-mortem male brain. Overall, anterior and posterior regions show leftward and rightward asymmetry respectively, but this pattern varies across cortical layers. A similar anterior-posterior pattern is observed using in vivo Human Connectome Project (N = 1101) T1w/T2w microstructural data, with average cortical asymmetry showing the strongest similarity with post-mortem-based asymmetry of layer III. Moreover, microstructural asymmetry is found to be heritable, varies as a function of age and sex, and corresponds to intrinsic functional asymmetry. We also observe a differential association of language and markers of mental health with microstructural asymmetry patterns at the individual level, illustrating a functional divergence between inferior-superior and anterior-posterior microstructural axes, possibly anchored in development. Last, we could show concordant evidence with alternative in vivo microstructural measures: magnetization transfer (N = 286) and quantitative T1 (N = 50). Together, our study highlights microstructural asymmetry in the human cortex and its functional and behavioral relevance.

摘要

人类大脑皮层表现出半球不对称性,但这种不对称的微观结构基础仍不完全清楚。在这里,我们使用一个死后的男性大脑来探测特定于层的微观结构不对称性。总的来说,前区和后区分别表现出左向和右向的不对称性,但这种模式在皮质各层中有所不同。使用活体人类连接组计划(N=1101)T1w/T2w 微观结构数据也观察到了类似的前后模式,平均皮质不对称性与基于死后的 III 层不对称性具有最强的相似性。此外,微观结构不对称性是可遗传的,随年龄和性别而变化,并与内在功能不对称性相对应。我们还观察到语言和心理健康标志物与个体水平的微观结构不对称模式之间存在差异关联,这表明在发育过程中,下至上和前至后的微观结构轴之间存在功能上的分歧。最后,我们可以用替代的活体微观结构测量方法来证明一致性:磁化传递(N=286)和定量 T1(N=50)。总之,我们的研究强调了人类大脑皮层的微观结构不对称性及其功能和行为相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17f2/11584796/f83d64005cd6/41467_2024_54243_Fig1_HTML.jpg

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