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早产后脑发育的异质性、时间上的一致性和可塑性。

Heterogeneous, temporally consistent, and plastic brain development after preterm birth.

作者信息

Thalhammer Melissa, Seidlitz Jakob, Neubauer Antonia, Menegaux Aurore, Schmitz-Koep Benita, Di Biase Maria A, Schulz Julia, Dorfschmidt Lena, Bethlehem Richard A I, Alexander-Bloch Aaron, Adamson Chris, Ball Gareth, Sa de Almeida Joana, Beare Richard, Zimmer Claus, Daamen Marcel, Boecker Henning, Bartmann Peter, Wolke Dieter, Hedderich Dennis M, Sorg Christian

机构信息

Technical University of Munich, School of Medicine and Health, Department of Diagnostic and Interventional Neuroradiology, TUM Klinikum Rechts der Isar, Munich, Germany.

Technical University of Munich, School of Medicine and Health, TUM-NIC Neuroimaging Center, TUM Klinikum Rechts der Isar, Munich, Germany.

出版信息

Nat Commun. 2025 Sep 12;16(1):8269. doi: 10.1038/s41467-025-63967-1.

Abstract

The current view of neurodevelopment after preterm birth presents a strong paradox: diverse neurocognitive outcomes suggest heterogeneous neurodevelopment, yet numerous brain imaging studies focusing on average dysmaturation imply largely uniform aberrations across individuals. Here we show both, spatially heterogeneous individual brain abnormality patterns but with consistent underlying biological mechanisms of injury and plasticity. Using cross-sectional structural magnetic resonance imaging data from preterm neonates and longitudinal data from preterm children and adults in a normative reference framework, we demonstrate that brain development after preterm birth is highly heterogeneous in both severity and patterns of deviations. Individual brain abnormality patterns are also consistent for their extent and location along the life course, associated with glial cell underpinnings, and plastic for influences of the early social environment. Our findings extend conventional views of preterm neurodevelopment, revealing a nuanced landscape of individual variation, with consistent commonalities between subjects. This integrated perspective implies more targeted theranostic intervention strategies, specifically integrating brain charts and imaging at birth, as well as social interventions during early development.

摘要

目前对于早产后脑神经发育的观点存在一个强烈的悖论

多样的神经认知结果表明神经发育存在异质性,但众多关注平均发育不成熟的脑成像研究却暗示个体间存在很大程度的一致畸变。在此我们表明,一方面存在空间上异质的个体脑异常模式,另一方面损伤和可塑性的潜在生物学机制却是一致的。利用来自早产新生儿的横断面结构磁共振成像数据以及来自早产儿童和成人的纵向数据,并置于一个规范参考框架中,我们证明早产后脑发育在严重程度和偏差模式上都具有高度异质性。个体脑异常模式在其沿生命历程的范围和位置上也是一致的,与神经胶质细胞基础相关,并且会因早期社会环境的影响而具有可塑性。我们的研究结果扩展了早产神经发育的传统观点,揭示了个体差异的细微图景,以及个体间一致的共性。这种综合观点意味着更具针对性的治疗诊断干预策略,特别是整合出生时的脑图谱和成像,以及早期发育期间的社会干预。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0574/12432136/00e054fa26a2/41467_2025_63967_Fig1_HTML.jpg

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