University Research Priority Program "Dynamics of Healthy Aging", University of Zurich, Zurich, Switzerland.
Division of Neuropsychology, Institute of Psychology, University of Zurich, Zurich, Switzerland.
Hum Brain Mapp. 2020 Dec;41(17):4829-4845. doi: 10.1002/hbm.25161. Epub 2020 Aug 28.
Healthy aging is associated with changes in cognitive performance and functional brain organization. In fact, cross-sectional studies imply lower modularity and significant heterogeneity in modular architecture across older subjects. Here, we used a longitudinal dataset consisting of four occasions of resting-state-fMRI and cognitive testing (spanning 4 years) in 150 healthy older adults. We applied a graph-theoretic analysis to investigate the time-evolving modular structure of the whole-brain network, by maximizing the multilayer modularity across four time points. Global flexibility, which reflects the tendency of brain nodes to switch between modules across time, was significantly higher in healthy elderly than in a temporal null model. Further, global flexibility, as well as network-specific flexibility of the default mode, frontoparietal control, and somatomotor networks, were significantly associated with age at baseline. These results indicate that older age is related to higher variability in modular organization. The temporal metrics were not associated with simultaneous changes in processing speed or learning performance in the context of memory encoding. Finally, this approach provides global indices for longitudinal change across a given time span and it may contribute to uncovering patterns of modular variability in healthy and clinical aging populations.
健康老龄化与认知表现和功能大脑组织的变化有关。事实上,横断面研究表明,随着年龄的增长,模块化结构的模块性降低,异质性显著增加。在这里,我们使用了一个包含 150 名健康老年人四次静息状态 fMRI 和认知测试(跨越 4 年)的纵向数据集。我们应用图论分析通过在四个时间点最大化多层模块化来研究整个大脑网络的时间演变模块化结构。全局灵活性,反映了大脑节点在时间上在模块之间切换的趋势,在健康老年人中明显高于时间空模型。此外,全局灵活性以及默认模式、额顶控制和躯体运动网络的网络特定灵活性与基线时的年龄显著相关。这些结果表明,随着年龄的增长,模块组织的可变性更高。在记忆编码的背景下,时间指标与处理速度或学习表现的同时变化无关。最后,这种方法提供了给定时间段内的全局指标,它可能有助于揭示健康和临床老龄化人群中模块化变异性的模式。