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人类胎儿大脑丘脑皮质通路的时空组织成熟。

Spatiotemporal tissue maturation of thalamocortical pathways in the human fetal brain.

机构信息

Centre for the Developing Brain, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.

Centre for Neurodevelopmental Disorders, King's College London, London, United Kingdom.

出版信息

Elife. 2023 Apr 3;12:e83727. doi: 10.7554/eLife.83727.

Abstract

The development of connectivity between the thalamus and maturing cortex is a fundamental process in the second half of human gestation, establishing the neural circuits that are the basis for several important brain functions. In this study, we acquired high-resolution in utero diffusion magnetic resonance imaging (MRI) from 140 fetuses as part of the Developing Human Connectome Project, to examine the emergence of thalamocortical white matter over the second to third trimester. We delineate developing thalamocortical pathways and parcellate the fetal thalamus according to its cortical connectivity using diffusion tractography. We then quantify microstructural tissue components along the tracts in fetal compartments that are critical substrates for white matter maturation, such as the subplate and intermediate zone. We identify patterns of change in the diffusion metrics that reflect critical neurobiological transitions occurring in the second to third trimester, such as the disassembly of radial glial scaffolding and the lamination of the cortical plate. These maturational trajectories of MR signal in transient fetal compartments provide a normative reference to complement histological knowledge, facilitating future studies to establish how developmental disruptions in these regions contribute to pathophysiology.

摘要

丘脑与成熟皮层之间的连接发育是人类妊娠后半期的一个基本过程,它建立了神经回路,这些回路是几个重要脑功能的基础。在这项研究中,我们作为发展人类连接组计划的一部分,从 140 个胎儿中获得了高分辨率的子宫内扩散磁共振成像(MRI),以研究第二至第三个三个月期间丘脑皮质白质的出现。我们使用扩散轨迹描绘了发育中的丘脑皮质通路,并根据其与皮质的连接对胎儿丘脑进行分区。然后,我们沿着关键的白质成熟底物(如基板和中间区)的胎儿区量化轨迹上的微观结构组织成分。我们确定了反映第二至第三个三个月期间发生的关键神经生物学转变的扩散指标变化模式,例如放射状胶质支架的拆卸和皮质板的分层。这些短暂的胎儿区的 MR 信号的成熟轨迹提供了一个规范参考,以补充组织学知识,为未来的研究提供便利,以确定这些区域的发育中断如何导致病理生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37f5/10125021/ad996be1789e/elife-83727-fig1.jpg

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