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神经认知网络随老化的定向功能连接重配置:考虑丘脑-皮质相互作用的作用。

Reconfiguration of Directed Functional Connectivity Among Neurocognitive Networks with Aging: Considering the Role of Thalamo-Cortical Interactions.

机构信息

Cognitive Brain Dynamics Lab National Brain Research Centre NH-8 Manesar Haryana-122 052, India.

Department of Psychology, University of Miami, Coral Gables, FL 33124, USA.

出版信息

Cereb Cortex. 2021 Mar 5;31(4):1970-1986. doi: 10.1093/cercor/bhaa334.


DOI:10.1093/cercor/bhaa334
PMID:33253367
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7945028/
Abstract

A complete picture of how subcortical nodes, such as the thalamus, exert directional influence on large-scale brain network interactions across age remains elusive. Using directed functional connectivity and weighted net causal outflow on resting-state fMRI data, we provide evidence of a comprehensive reorganization within and between neurocognitive networks (default mode: DMN, salience: SN, and central executive: CEN) associated with age and thalamocortical interactions. We hypothesize that thalamus subserves both modality-specific and integrative hub role in organizing causal weighted outflow among large-scale neurocognitive networks. To this end, we observe that within-network directed functional connectivity is driven by thalamus and progressively weakens with age. Secondly, we find that age-associated increase in between CEN- and DMN-directed functional connectivity is driven by both the SN and the thalamus. Furthermore, left and right thalami act as a causal integrative hub exhibiting substantial interactions with neurocognitive networks with aging and play a crucial role in reconfiguring network outflow. Notably, these results were largely replicated on an independent dataset of matched young and old individuals. Our findings strengthen the hypothesis that the thalamus is a key causal hub balancing both within- and between-network connectivity associated with age and maintenance of cognitive functioning with aging.

摘要

目前对于皮质下节点(如丘脑)如何对跨年龄的大脑网络交互施加定向影响,还没有一个完整的认识。本研究使用静息态 fMRI 数据的有向功能连接和加权净因果输出,为与年龄和丘脑皮质相互作用相关的神经认知网络(默认模式网络 DMN、突显网络 SN 和中央执行网络 CEN)内和之间的全面重组提供了证据。我们假设丘脑在组织大尺度神经认知网络之间的因果加权输出方面,起到了特定模态和整合枢纽的作用。为此,我们观察到,网络内的有向功能连接是由丘脑驱动的,并且随着年龄的增长而逐渐减弱。其次,我们发现,与年龄相关的 CEN 和 DMN 之间的功能连接的增加是由 SN 和丘脑共同驱动的。此外,左右丘脑作为一个因果整合枢纽,与神经认知网络有大量的相互作用,在重新配置网络输出方面起着关键作用。值得注意的是,这些结果在一个匹配的年轻和老年个体的独立数据集上得到了很大程度的复制。我们的研究结果进一步证实了这样一种假设,即丘脑是一个关键的因果枢纽,它平衡了与年龄相关的网络内和网络间的连通性,维持了与年龄相关的认知功能。

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本文引用的文献

[1]
Lifespan associated global patterns of coherent neural communication.

Neuroimage. 2020-8-1

[2]
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Brain Topogr. 2019-11-9

[3]
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Nat Neurosci. 2019-10-14

[4]
Intrinsic Frequencies of the Resting-State fMRI Signal: The Frequency Dependence of Functional Connectivity and the Effect of Mode Mixing.

Front Neurosci. 2019-9-4

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Perspect Psychol Sci. 2019-4-23

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The Volume of Hippocampal Subfields in Relation to Decline of Memory Recall Across the Adult Lifespan.

Front Aging Neurosci. 2018-10-10

[7]
Exploring Age-Related Changes in Resting State Functional Connectivity of the Amygdala: From Young to Middle Adulthood.

Front Aging Neurosci. 2018-7-16

[8]
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Proc Natl Acad Sci U S A. 2018-7-17

[9]
Thalamic functional connectivity and its association with behavioral performance in older age.

Brain Behav. 2018-2-27

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Hemodynamic response function (HRF) variability confounds resting-state fMRI functional connectivity.

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