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全生命周期内的白质纤维束微观结构、宏观结构及相关皮质灰质形态。

White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan.

作者信息

Schilling Kurt G, Chad Jordan A, Chamberland Maxime, Nozais Victor, Rheault Francois, Archer Derek, Li Muwei, Gao Yurui, Cai Leon, Del'Acqua Flavio, Newton Allen, Moyer Daniel, Gore John C, Lebel Catherine, Landman Bennett A

机构信息

Department of Radiology & Radiological Sciences, Vanderbilt University Medical Center, Nashville, TN, United States.

Vanderbilt University Institute of Imaging Science, Vanderbilt University Medical Center, Nashville, TN, United States.

出版信息

Imaging Neurosci (Camb). 2023 Dec 18;1. doi: 10.1162/imag_a_00050. eCollection 2023.

Abstract

Characterizing how, when, and where the human brain changes across the lifespan is fundamental to our understanding of developmental processes of childhood and adolescence, degenerative processes of aging, and divergence from normal patterns in disease and disorders. We aimed to provide detailed descriptions of white matter pathways across the lifespan by thoroughly characterizing white matter , white matter , and morphology of the associated with white matter pathways. We analyzed four large, high-quality, cross-sectional datasets comprising 2789 total imaging sessions, and participants ranging from 0 to 100 years old, using advanced tractography and diffusion modeling. We first find that all microstructural, macrostructural, and cortical features of white matter bundles show unique lifespan trajectories, with rates and timing of development and degradation that vary across pathways-describing differences between types of pathways and locations in the brain, and developmental milestones of maturation of each feature. Second, we show cross-sectional relationships between different features that may help elucidate biological differences at different stages of the lifespan. Third, we show unique trajectories of age associations across features. Finally, we find that age associations during development are strongly related to those during aging. Overall, this study reports normative data for several features of white matter pathways of the human brain that are expected to be useful for studying normal and abnormal white matter development and degeneration.

摘要

描述人类大脑在整个生命周期中如何、何时以及何处发生变化,对于我们理解儿童和青少年的发育过程、衰老的退行性过程以及疾病和障碍中与正常模式的差异至关重要。我们旨在通过全面表征白质、白质以及与白质通路相关的形态,提供整个生命周期中白质通路的详细描述。我们使用先进的纤维束成像和扩散建模分析了四个大型、高质量的横断面数据集,这些数据集总共包含2789次成像扫描,参与者年龄范围从0岁到100岁。我们首先发现,白质束的所有微观结构、宏观结构和皮质特征都显示出独特的生命周期轨迹,其发育和退化的速率及时间因通路而异,描述了不同类型通路和大脑位置之间的差异,以及每个特征成熟的发育里程碑。其次,我们展示了不同特征之间的横断面关系,这可能有助于阐明生命周期不同阶段的生物学差异。第三,我们展示了各特征随年龄变化的独特轨迹。最后,我们发现发育过程中的年龄关联与衰老过程中的年龄关联密切相关。总体而言,本研究报告了人类大脑白质通路若干特征的规范数据,预计这些数据将有助于研究正常和异常的白质发育及退化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7e/12007540/a1a6f4a411d1/imag_a_00050_fig1.jpg

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