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人类海马亚区微观结构的发育与联想推理的关系。

Development of human hippocampal subfield microstructure and relation to associative inference.

机构信息

Indiana University, Psychological and Brain Sciences, 1101 E. 10th St., Bloomington, Indiana, 47405, United States.

Vanderbilt University, Psychology and Human Development, 230 Appleton Pl., Nashville, TN 37203, United States.

出版信息

Cereb Cortex. 2023 Sep 9;33(18):10207-10220. doi: 10.1093/cercor/bhad276.

Abstract

The hippocampus is a complex brain structure composed of subfields that each have distinct cellular organizations. While the volume of hippocampal subfields displays age-related changes that have been associated with inference and memory functions, the degree to which the cellular organization within each subfield is related to these functions throughout development is not well understood. We employed an explicit model testing approach to characterize the development of tissue microstructure and its relationship to performance on 2 inference tasks, one that required memory (memory-based inference) and one that required only perceptually available information (perception-based inference). We found that each subfield had a unique relationship with age in terms of its cellular organization. While the subiculum (SUB) displayed a linear relationship with age, the dentate gyrus (DG), cornu ammonis field 1 (CA1), and cornu ammonis subfields 2 and 3 (combined; CA2/3) displayed nonlinear trajectories that interacted with sex in CA2/3. We found that the DG was related to memory-based inference performance and that the SUB was related to perception-based inference; neither relationship interacted with age. Results are consistent with the idea that cellular organization within hippocampal subfields might undergo distinct developmental trajectories that support inference and memory performance throughout development.

摘要

海马体是一个由子区域组成的复杂脑结构,每个子区域都有独特的细胞组织。虽然海马体子区域的体积会发生与年龄相关的变化,这些变化与推理和记忆功能有关,但每个子区域内的细胞组织与这些功能在整个发育过程中的关系还不太清楚。我们采用了一种明确的模型测试方法来描述组织微观结构的发展及其与两种推理任务表现之间的关系,一种需要记忆(基于记忆的推理),另一种只需要可感知的信息(基于感知的推理)。我们发现,每个子区域的细胞组织与年龄之间都有独特的关系。虽然下托(SUB)与年龄呈线性关系,但齿状回(DG)、角回 1(CA1)和角回亚区 2 和 3(合并;CA2/3)的轨迹是非线性的,且在 CA2/3 中与性别相互作用。我们发现 DG 与基于记忆的推理表现有关,SUB 与基于感知的推理有关;这两种关系都与年龄无关。结果与这样的观点一致,即海马体子区域内的细胞组织可能经历不同的发育轨迹,从而在整个发育过程中支持推理和记忆表现。

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