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支持儿童认知发展的功能性脑回路的交互专业化和出现机制。

Mechanisms of interactive specialization and emergence of functional brain circuits supporting cognitive development in children.

作者信息

Battista Christian, Evans Tanya M, Ngoon Tricia J, Chen Tianwen, Chen Lang, Kochalka John, Menon Vinod

机构信息

1Department of Psychiatry & Behavioral Sciences, Stanford University School of Medicine, Stanford, CA USA.

2Department of Neurology and Neurological Sciences, Stanford University School of Medicine, Stanford, CA USA.

出版信息

NPJ Sci Learn. 2018 Jan 10;3:1. doi: 10.1038/s41539-017-0017-2. eCollection 2018.

Abstract

Cognitive development is thought to depend on the refinement and specialization of functional circuits over time, yet little is known about how this process unfolds over the course of childhood. Here we investigated growth trajectories of functional brain circuits and tested an interactive specialization model of neurocognitive development which posits that the refinement of task-related functional networks is driven by a shared history of co-activation between cortical regions. We tested this model in a longitudinal cohort of 30 children with behavioral and task-related functional brain imaging data at multiple time points spanning childhood and adolescence, focusing on the maturation of parietal circuits associated with numerical problem solving and learning. Hierarchical linear modeling revealed selective strengthening as well as weakening of functional brain circuits. Connectivity between parietal and prefrontal cortex decreased over time, while connectivity within posterior brain regions, including intra-hemispheric and inter-hemispheric parietal connectivity, as well as parietal connectivity with ventral temporal occipital cortex regions implicated in quantity manipulation and numerical symbol recognition, increased over time. Our study provides insights into the longitudinal maturation of functional circuits in the human brain and the mechanisms by which interactive specialization shapes children's cognitive development and learning.

摘要

认知发展被认为依赖于功能回路随时间的细化和专门化,但对于这一过程在儿童时期如何展开却知之甚少。在此,我们研究了功能性脑回路的生长轨迹,并测试了一种神经认知发展的交互专门化模型,该模型假定与任务相关的功能网络的细化是由皮质区域之间共同激活的共享历史驱动的。我们在一个由30名儿童组成的纵向队列中测试了该模型,这些儿童在跨越童年和青春期的多个时间点都有行为和与任务相关的功能性脑成像数据,重点关注与数字问题解决和学习相关的顶叶回路的成熟情况。分层线性模型揭示了功能性脑回路的选择性增强以及减弱。随着时间的推移,顶叶和前额叶皮质之间的连接性下降,而后脑区域内的连接性,包括半球内和半球间的顶叶连接性,以及与涉及数量操作和数字符号识别的腹侧颞枕叶皮质区域的顶叶连接性,则随着时间的推移而增加。我们的研究为人类大脑中功能回路的纵向成熟以及交互专门化塑造儿童认知发展和学习的机制提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c831/6220196/2ab180197a04/41539_2017_17_Fig1_HTML.jpg

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