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静息状态下皮质中枢在青年时期可分为四类。

Resting-state cortical hubs in youth organize into four categories.

机构信息

Department of Cognitive Science, University of California San Diego, La Jolla, CA 92093, USA.

Department of Radiology, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Cell Rep. 2023 May 30;42(5):112521. doi: 10.1016/j.celrep.2023.112521. Epub 2023 May 17.

Abstract

During childhood, neural systems supporting high-level cognitive processes undergo periods of rapid growth and refinement, which rely on the successful coordination of activation across the brain. Some coordination occurs via cortical hubs-brain regions that coactivate with functional networks other than their own. Adult cortical hubs map into three distinct profiles, but less is known about hub categories during development, when critical improvement in cognition occurs. We identify four distinct hub categories in a large youth sample (n = 567, ages 8.5-17.2), each exhibiting more diverse connectivity profiles than adults. Youth hubs integrating control-sensory processing split into two distinct categories (visual control and auditory/motor control), whereas adult hubs unite under one. This split suggests a need for segregating sensory stimuli while functional networks are experiencing rapid development. Functional coactivation strength for youth control-processing hubs are associated with task performance, suggesting a specialized role in routing sensory information to and from the brain's control system.

摘要

在儿童时期,支持高级认知过程的神经系统经历了快速增长和精细化的阶段,这依赖于大脑之间激活的成功协调。一些协调是通过皮质中枢实现的,即大脑区域与自身以外的功能网络共同激活。成人皮质中枢映射到三个不同的类型,但在认知关键改善的发育阶段,对皮质中枢的分类知之甚少。我们在一个大型青年样本(n=567,年龄 8.5-17.2 岁)中确定了四个不同的中枢类型,每个类型的连接模式都比成年人更加多样化。整合控制-感觉处理的青年中枢分为两类(视觉控制和听觉/运动控制),而成年中枢则合为一类。这种分裂表明,在功能网络快速发展的过程中,需要对感觉刺激进行分离。青年控制处理中枢的功能共激活强度与任务表现相关,这表明它们在将感觉信息路由到大脑的控制系统和从控制系统中路由感觉信息方面具有专门的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30f0/10281712/88b33b8a8afd/nihms-1905389-f0001.jpg

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