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首页> 外文期刊>Journal of Cognitive Neuroscience >Developmental Maturation of the Precuneus as a Functional Core of the Default Mode Network
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Developmental Maturation of the Precuneus as a Functional Core of the Default Mode Network

机译:Precuneus作为默认模式网络的功能核心的发展成熟。

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Efforts to map the functional architecture of the developing human brain have shown that connectivity between and within functional neural networks changes from childhood to adulthood. Although prior work has established that the adult precuneus distinctively modifies its connectivity during task versus rest states [Utevsky, A. V., Smith, D. V., & Huettel, S. A. Precuneus is a functional core of the default-mode network. Journal of Neuroscience, 34, 932-940, 2014], it remains unknown how these connectivity patterns emerge over development. Here, we use fMRI data collected at two longitudinal time points from over 250 participants between the ages of 8 and 26 years engaging in two cognitive tasks and a resting-state scan. By applying independent component analysis to both task and rest data, we identified three canonical networks of interest-the rest-based default mode network and the task-based left and right frontoparietal networks (LFPN and RFPN, respectively)-which we explored for developmental changes using dual regression analyses. We found systematic state-dependent functional connectivity in the precuneus, such that engaging in a task (compared with rest) resulted in greater precuneus-LFPN and precuneus-RFPN connectivity, whereas being at rest (compared with task) resulted in greater precuneus-default mode network connectivity. These cross-sectional results replicated across both tasks and at both developmental time points. Finally, we used longitudinal mixed models to show that the degree to which precuneus distinguishes between task and rest states increases with age, due to age-related increasing segregation between precuneus and LFPN at rest. Our results highlight the distinct role of the precuneus in tracking processing state, in a manner that is both present throughout and strengthened across development.
机译:绘制人类大脑功能结构图的努力表明,功能神经网络之间和内部的连通性从童年到成年都在变化。尽管先前的工作已经确定,成年precuneus在任务状态与休息状态期间会显着改变其连接性[Utevsky,A. V.,Smith,D. V.和Huettel,S. A. Precuneus是默认模式网络的功能核心。 Journal of Neuroscience,34,932-940,2014],这些连通性模式如何随着发展而出现仍然未知。在这里,我们使用fMRI数据在两个纵向时间点从8个至26岁的250多名参与者中收集,这些参与者从事两项认知任务和一项静息状态扫描。通过对任务和休息数据进行独立的成分分析,我们确定了感兴趣的三个规范网络-基于休息的默认模式网络和基于任务的左,右额顶网(分别为LFPN和RFPN)-我们对其进行了探索使用对偶回归分析进行更改。我们发现在早孕中系统的状态相关的功能连通性,使得从事一项任务(与休息相比)会导致更大的早孕-LFPN和早孕-RFPN连通性,而在休息时(与任务相比)会导致更大的早孕-默认模式网络连接。这些横截面结果在两个任务和两个开发时间点上都得到了复制。最后,我们使用纵向混合模型来显示,由于年龄相关的precuneus和LFPN在静止时的隔离增加,因此precuneus对任务状态和休息状态的区分程度随年龄增加而增加。我们的结果突出了早产儿在追踪加工状态中的独特作用,这种作用既存在于整个开发过程中,又贯穿整个开发过程而得到加强。

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