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儿童和青少年皮质微观结构和认知发育的成熟:T1w/T2w 比值 MRI 研究。

Maturation of cortical microstructure and cognitive development in childhood and adolescence: A T1w/T2w ratio MRI study.

机构信息

NORMENT, Division of Mental Health and Addiction, Oslo University Hospital & Institute of Clinical Medicine, University of Oslo, Oslo, Norway.

PROMENTA Research Center, Department of Psychology, University of Oslo, Oslo, Norway.

出版信息

Hum Brain Mapp. 2020 Nov;41(16):4676-4690. doi: 10.1002/hbm.25149. Epub 2020 Aug 3.

Abstract

The restructuring and optimization of the cerebral cortex from early childhood and through adolescence is an essential feature of human brain development, underlying immense cognitive improvements. Beyond established morphometric cortical assessments, the T1w/T2w ratio quantifies partly separate biological processes, and might inform models of typical neurocognitive development and developmental psychopathology. In the present study, we computed vertex-wise T1w/T2w ratio across the cortical surface in 621 youths (3-21 years) sampled from the Pediatric Imaging, Neurocognition, and Genetics (PING) study and tested for associations with individual differences in age, sex, and both general and specific cognitive abilities. The results showed a near global linear age-related increase in T1w/T2w ratio across the brain surface, with a general posterior to anterior increasing gradient in association strength. Moreover, results indicated that boys in late adolescence had regionally higher T1w/T2w ratio as compared to girls. Across individuals, T1w/T2w ratio was negatively associated with general and several specific cognitive abilities mainly within anterior cortical regions. Our study indicates age-related differences in T1w/T2w ratio throughout childhood, adolescence, and young adulthood, in line with the known protracted myelination of the cortex. Moreover, the study supports T1w/T2w ratio as a promising surrogate measure of individual differences in intracortical brain structure in neurodevelopment.

摘要

大脑皮层从儿童早期到青少年时期的重组和优化是人类大脑发育的重要特征,为巨大的认知提升提供了基础。除了已建立的形态计量学皮质评估外,T1w/T2w 比值量化了部分独立的生物学过程,并且可能为典型的神经认知发展和发展性精神病理学模型提供信息。在本研究中,我们在从儿科成像、神经认知和遗传学(PING)研究中抽取的 621 名年轻人(3-21 岁)的皮质表面上计算了每个顶点的 T1w/T2w 比值,并测试了其与年龄、性别以及一般和特定认知能力个体差异之间的相关性。结果显示,T1w/T2w 比值在整个大脑表面上几乎呈线性增加,与关联强度呈一般的后向前递增梯度。此外,结果表明,与女孩相比,青春期后期的男孩大脑特定区域的 T1w/T2w 比值更高。在个体之间,T1w/T2w 比值与一般认知能力和几种特定认知能力呈负相关,主要集中在前部皮质区域。我们的研究表明,T1w/T2w 比值在儿童期、青春期和成年早期存在与年龄相关的差异,这与皮质中髓鞘形成的长期过程一致。此外,该研究支持 T1w/T2w 比值作为神经发育中皮质内脑结构个体差异的有前途的替代测量指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f92f/7555087/81615e7f886b/HBM-41-4676-g001.jpg

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