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猕猴大脑表面积与脑沟深度之间的皮质发育耦合

Cortical development coupling between surface area and sulcal depth on macaque brains.

作者信息

Li Xiao, Zhang Songyao, Jiang Xi, Zhang Shu, Han Junwei, Guo Lei, Zhang Tuo

机构信息

School of Automation, Northwestern Polytechnical University, Xi'an, China.

School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

Brain Struct Funct. 2022 Apr;227(3):1013-1029. doi: 10.1007/s00429-021-02444-z. Epub 2022 Jan 6.

Abstract

Postnatal development of cerebral cortex is associated with a variety of neuronal processes and is thus critical to development of brain function and cognition. Longitudinal changes of cortical morphology and topology, such as postnatal cortical thinning and flattening have been widely studied. However, thorough and systematic investigation of such cortical change, including how to quantify it from multiple spatial directions and how to relate it to surface topology, is rarely found. In this work, based on a longitudinal macaque neuroimaging dataset, we quantified local changes in gyral white matter's surface area and sulcal depth during early development. We also investigated how these two metrics are coupled and how this coupling is linked to cortical surface topology, underlying white matter, and positions of functional areas. Semi-parametric generalized additive models were adopted to quantify the longitudinal changes of surface area (A) and sulcal depth (D), and the coupling patterns between them. This resulted in four classes of regions, according to how they change compared with global change throughout early development: slower surface area change and slower sulcal depth change (slowA_slowD), slower surface area change and faster sulcal depth change (slowA_fastD), faster surface area change and slower sulcal depth change (fastA_slowD), and faster surface area change and faster sulcal depth change (fastA_fastD). We found that cortex-related metrics, including folding pattern and cortical thickness, vary along slowA_fastD-fastA_slowD axis, and structural connection-related metrics vary along fastA_fastD-slowA_slowD axis, with which brain functional sites align better. It is also found that cortical landmarks, including sulcal pits and gyral hinges, spatially reside on the borders of the four patterns. These findings shed new lights on the relationship between cortex development, surface topology, axonal wiring pattern and brain functions.

摘要

大脑皮层的产后发育与多种神经元过程相关,因此对脑功能和认知的发展至关重要。皮层形态和拓扑结构的纵向变化,如产后皮层变薄和变平,已得到广泛研究。然而,对这种皮层变化的全面系统研究,包括如何从多个空间方向对其进行量化以及如何将其与表面拓扑结构相关联,却很少见。在这项工作中,基于一个纵向猕猴神经影像数据集,我们量化了早期发育过程中脑回白质表面积和脑沟深度的局部变化。我们还研究了这两个指标是如何耦合的,以及这种耦合如何与皮层表面拓扑结构、潜在白质和功能区位置相关联。采用半参数广义相加模型来量化表面积(A)和脑沟深度(D)的纵向变化以及它们之间的耦合模式。根据它们在整个早期发育过程中与全局变化相比的变化情况,这产生了四类区域:表面积变化较慢且脑沟深度变化较慢(slowA_slowD)、表面积变化较慢且脑沟深度变化较快(slowA_fastD)、表面积变化较快且脑沟深度变化较慢(fastA_slowD)以及表面积变化较快且脑沟深度变化较快(fastA_fastD)。我们发现,与皮层相关的指标,包括折叠模式和皮层厚度,沿slowA_fastD-fastA_slowD轴变化,与结构连接相关的指标沿fastA_fastD-slowA_slowD轴变化,脑功能位点与后者的对齐更好。还发现,包括脑沟凹和脑回铰链在内的皮层地标在空间上位于这四种模式的边界上。这些发现为皮层发育、表面拓扑结构、轴突布线模式和脑功能之间的关系提供了新的线索。

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