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理性时代:儿童期功能性大脑网络的发展。

The Age of Reason: Functional Brain Network Development during Childhood.

机构信息

Department of Psychology, School of Arts and Sciences, University of Pennsylvania, Philadelphia, Pennsylvania 19104.

Neuroscience Graduate Group, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104.

出版信息

J Neurosci. 2022 Nov 2;42(44):8237-8251. doi: 10.1523/JNEUROSCI.0511-22.2022. Epub 2022 Oct 3.

Abstract

Human childhood is characterized by dramatic changes in the mind and brain. However, little is known about the large-scale intrinsic cortical network changes that occur during childhood because of methodological challenges in scanning young children. Here, we overcome this barrier by using sophisticated acquisition and analysis tools to investigate functional network development in children between the ages of 4 and 10 years ([Formula: see text]; 50 female, 42 male). At multiple spatial scales, age is positively associated with brain network segregation. At the system level, age was associated with segregation of systems involved in attention from those involved in abstract cognition, and with integration among attentional and perceptual systems. Associations between age and functional connectivity are most pronounced in visual and medial prefrontal cortex, the two ends of a gradient from perceptual, externally oriented cortex to abstract, internally oriented cortex. These findings suggest that both ends of the sensory-association gradient may develop early, in contrast to the classical theories that cortical maturation proceeds from back to front, with sensory areas developing first and association areas developing last. More mature patterns of brain network architecture, controlling for age, were associated with better visuospatial reasoning abilities. Our results suggest that as cortical architecture becomes more specialized, children become more able to reason about the world and their place in it. Anthropologists have called the transition from early to middle childhood the "age of reason", when children across cultures become more independent. We employ cutting-edge neuroimaging acquisition and analysis approaches to investigate associations between age and functional brain architecture in childhood. Age was positively associated with segregation between cortical systems that process the external world and those that process abstract phenomena like the past, future, and minds of others. Surprisingly, we observed pronounced development at both ends of the sensory-association gradient, challenging the theory that sensory areas develop first and association areas develop last. Our results open new directions for research into how brains reorganize to support rapid gains in cognitive and socioemotional skills as children reach the age of reason.

摘要

人类的儿童期具有显著的心智和大脑变化。然而,由于在对幼儿进行扫描时存在方法学上的挑战,因此对于儿童期发生的大规模内在皮质网络变化知之甚少。在这里,我们使用复杂的采集和分析工具来克服这一障碍,研究了 4 至 10 岁儿童([公式:见正文];50 名女性,42 名男性)的功能网络发育。在多个空间尺度上,年龄与大脑网络的分隔呈正相关。在系统水平上,年龄与注意力系统与抽象认知系统的分离有关,与注意力和感知系统的整合有关。年龄与功能连接之间的关联在视觉和内侧前额叶皮质最为明显,这是从感知到外部定向的皮质到抽象到内部定向的皮质的梯度的两个端点。与年龄相关的功能连接的发现表明,从感知到关联的梯度的两个端点可能都很早就开始发展了,这与皮质成熟从后向前进行的经典理论相反,即感觉区域首先发育,而关联区域最后发育。控制年龄后,更成熟的大脑网络结构模式与更好的视觉空间推理能力相关。我们的研究结果表明,随着大脑网络结构变得更加专业化,儿童能够更好地推理世界及其在世界中的位置。人类学家将从中年到儿童期的过渡称为“理性时代”,在此期间,来自不同文化背景的儿童变得更加独立。我们采用最先进的神经影像学采集和分析方法来研究儿童期年龄与功能大脑结构之间的关联。年龄与处理外部世界的皮质系统和处理抽象现象(如过去、未来和他人思想)的皮质系统之间的分离呈正相关。令人惊讶的是,我们观察到在感觉-关联梯度的两个端点都有明显的发育,这对感觉区域首先发育而关联区域最后发育的理论提出了挑战。我们的研究结果为研究大脑如何重新组织以支持儿童达到理性时代时认知和社会情感技能的快速提高提供了新的方向。

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