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Effects of Cognitive Training on Resting-State Functional Connectivity of Default Mode Salience and Central Executive Networks

机译:认知训练对默认模式显着性和中央执行网络的静止状态功能连接的影响

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摘要

Neuroimaging studies have documented that aging can disrupt certain higher cognitive systems such as the default mode network (DMN), the salience network and the central executive network (CEN). The effect of cognitive training on higher cognitive systems remains unclear. This study used a 1-year longitudinal design to explore the cognitive training effect on three higher cognitive networks in healthy older adults. The community-living healthy older adults were divided into two groups: the multi-domain cognitive training group (24 sessions of cognitive training over a 3-months period) and the wait-list control group. All subjects underwent cognitive measurements and resting-state functional magnetic resonance imaging scanning at baseline and at 1 year after the training ended. We examined training-related changes in functional connectivity (FC) within and between three networks. Compared with the baseline, we observed maintained or increased FC within all three networks after training. The scans after training also showed maintained anti-correlation of FC between the DMN and CEN compared to the baseline. These findings demonstrated that cognitive training maintained or improved the functional integration within networks and the coupling between the DMN and CEN in older adults. Our findings suggested that multi-domain cognitive training can mitigate the aging-related dysfunction of higher cognitive networks.
机译:神经影像学研究表明,衰老会破坏某些高级认知系统,例如默认模式网络(DMN),显着网络和中央执行网络(CEN)。认知训练对高级认知系统的影响尚不清楚。这项研究使用了为期一年的纵向设计,探讨了健康老年人对三个更高认知网络的认知训练效果。居住社区的健康老年人分为两组:多领域认知训练组(在3个月的时间内进行24场认知训练)和等待列表对照组。所有受试者均在基线和训练结束后的一年进行认知测量和静息状态功能磁共振成像扫描。我们研究了与培训有关的三个网络内部和网络之间功能连接(FC)的变化。与基线相比,我们观察到训练后所有三个网络中的FC保持或增加。训练后的扫描还显示,与基线相比,DMN和CEN之间的FC保持反相关。这些发现表明,认知训练可以维持或改善老年人网络中的功能整合以及DMN和CEN之间的耦合。我们的研究结果表明,多领域认知训练可以减轻与高级认知网络有关的衰老相关的功能障碍。

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