Spatiotemporal Patterns in Cortical Development: Age, Puberty, and Individual Variability from 9 to 13 Years of Age.

IF 4 2区 医学 Q1 NEUROSCIENCES
Katherine L Bottenhorn, Jordan D Corbett, Hedyeh Ahmadi, Megan M Herting
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Abstract

Human and nonhuman primate studies suggest that timing and tempo of cortical development varies neuroanatomically along a sensorimotor-to-association (S-A) axis. Prior human studies have reported a principal S-A axis across various modalities but largely rely on cross-sectional samples with wide age ranges. Here, we investigate developmental changes and individual variability therein along the S-A axis between the ages of 9-13 years using a large, longitudinal sample (N = 2,487-3,747; 46-50% female) from the Adolescent Brain Cognitive Development Study (ABCD Study). This work assesses multiple aspects of neurodevelopment indexed by changes in cortical thickness, cortical microarchitecture, and resting-state low-frequency oscillations. First, we evaluated S-A organization in age-related changes and then computed individual-level S-A alignment in brain changes and assessing differences therein due to age, sex, and puberty. Age-related brain changes aligned linearly and quadratically with the S-A axis. Yet, these patterns of cortical development were overshadowed by considerable individual variability in S-A alignment. Even within individuals, there was little correspondence between S-A patterning across the different aspects of neurodevelopment investigated (i.e., cortical morphology, microarchitecture, function). Some of the individual variation in developmental patterning of cortical morphology and microarchitecture was explained by age, sex, and pubertal development. Altogether, this work contextualizes prior findings that regional age differences do progress along an S-A axis at a group level while highlighting broad variation in developmental change between individuals and between aspects of cortical development, in part due to sex and puberty.

皮层发育的时空模式:年龄、青春期和9 - 13岁的个体差异。
人类和非人类灵长类动物的研究表明,皮层发育的时间和节奏在神经解剖学上沿着感觉运动-联想(S-A)轴变化。先前的人类研究报告了不同模式的主要S-A轴,但主要依赖于年龄范围广的横断面样本。在这里,我们使用来自青少年大脑认知发展研究(ABCD Study®)的大型纵向样本(N = 2487-3747, 46-50%为女性),研究了9-13岁之间沿S-A轴皮质组织的发育变化和个体差异。这项工作通过皮层厚度、皮层微结构和静息状态低频振荡的变化来评估神经发育的多个方面。首先,我们评估了与年龄相关的S-A组织变化,然后计算了个体水平上大脑变化的S-A排列,并评估了年龄、性别和青春期导致的差异。在S-A轴上发现了不同程度的线性和二次型年龄相关的大脑变化。然而,这些皮质发育模式被相当大的S-A排列的个体差异所掩盖。即使在个体中,S-A模式在神经发育的不同方面(即皮层形态、微结构、功能)之间也几乎没有对应关系。皮层形态和微结构发育模式的一些个体差异可以用年龄、性别和青春期发育来解释。总的来说,这项工作将之前的研究结果置于背景下,即区域年龄差异确实在群体水平上沿着S-A轴发展,同时强调了个体之间和皮层发育各方面的发育变化的广泛差异,部分原因是性别和青春期。理解青少年大脑变化的规范模式,以及其中的个体差异,对于理清健康和异常发育是至关重要的。我们利用纵向人类神经成像数据研究了青春期早期神经发育的几个方面,并评估了它们沿着大脑皮层的感觉运动-联想(S-A)轴的组织。大脑变化的年龄差异沿S-A轴呈线性和曲线状。然而,个体水平的感觉运动关联一致性差异很大,部分原因是性别和青春期发育的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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