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大脑功能连接中时变特征的年龄相关差异与认知衰老

Age-related differences of the time-varying features in the brain functional connectivity and cognitive aging.

作者信息

Yao Furong, Zhao Ziyang, Wang Yin, Li Tongtong, Chen Miao, Yao Zhijun, Jiao Jin, Hu Bin

机构信息

Gansu Provincial Key Laboratory of Wearable Computing, School of Information Science and Engineering, Lanzhou University, Lanzhou, Gansu, China.

Department of Sleep Medicine, The Third People's Hospital of Tianshui, Tianshui, Gansu, China.

出版信息

Psychophysiology. 2025 Feb;62(2):e14702. doi: 10.1111/psyp.14702. Epub 2024 Nov 1.

Abstract

Brain functional modular organization changes with age. Considering the brain as a dynamic system, recent studies have suggested that time-varying connectivity provides more information on brain functions. However, the spontaneous reconfiguration of modular brain structures over time during aging remains poorly understood. In this study, we investigated the age-related dynamic modular reconfiguration using resting-state functional MRI data (615 participants, aged 18-88 years) from Cam-CAN. We employed a graph-based modularity analysis to investigate modular variability and the transition of nodes from one module to another in modular brain networks across the adult lifespan. Results showed that modular structure exhibits both linear and nonlinear age-related trends. The modular variability is higher in early and late adulthood, with higher modular variability in the association networks and lower modular variability in the primary networks. In addition, the whole-brain transition matrix showed that the times of transition from other networks to the dorsal attention network were the largest. Furthermore, the modular structure was closely related to the number of cognitive components and memory-related cognitive performance, suggesting a potential contribution to flexibility cognitive function. Our findings highlighted the notable dynamic characteristics in large-scale brain networks across the adult lifespan, which enhanced our understanding of the neural substrate in various cognitions during aging. These findings also provided further evidence that dedifferentiation and compensation are the outcomes of functional brain interactions.

摘要

脑功能模块化组织随年龄变化。将大脑视为一个动态系统,最近的研究表明,时变连接性能提供更多关于脑功能的信息。然而,在衰老过程中模块化脑结构随时间的自发重构仍知之甚少。在本研究中,我们使用来自剑桥认知神经科学研究(Cam-CAN)的静息态功能磁共振成像数据(615名参与者,年龄在18至88岁之间),研究了与年龄相关的动态模块化重构。我们采用基于图的模块化分析来研究模块化变异性以及在整个成年期的模块化脑网络中节点从一个模块到另一个模块的转变。结果表明,模块化结构呈现出与年龄相关的线性和非线性趋势。模块化变异性在成年早期和晚期较高,联合网络中的模块化变异性较高,初级网络中的模块化变异性较低。此外,全脑转变矩阵显示,从其他网络转变为背侧注意网络的次数最多。此外,模块化结构与认知成分的数量和与记忆相关的认知表现密切相关,表明其对灵活认知功能有潜在贡献。我们的研究结果突出了整个成年期大规模脑网络中显著的动态特征,增强了我们对衰老过程中各种认知的神经基础的理解。这些发现还进一步证明了去分化和补偿是功能性脑相互作用的结果。

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