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Effects of task complexity and age-differences on task-related functional connectivity of attentional networks

机译:任务复杂性和年龄差异对关注网络的任务相关功能连通性的影响

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Studies investigating the strength and membership of regions within multiple functional networks primarily focus on either resting state or single cognitive tasks. The goals of the current study were to investigate whether task-related functional connectivity changes with task complexity, and whether this connectivity-complexity relationship is age-sensitive. We assessed seed-to-voxel functional connectivity for the default mode network (DMN) and two attentional networks [cingulo-opercular (CO), fronto-parietal (FP)] in three cognitive control tasks of increasing complexity (Single task, Dual task, and Memory Updating), across younger and older adults (N = 52; N-young = 23; N-old = 29). The three tasks systematically varied in cognitive control demands due to differing maintenance, switching, and updating requirements. Functional connectivity for all networks, resulting from task rest contrasts, increased with greater task complexity, irrespective of age and gray matter volume. Moreover, between-network connectivity for DMN, CO, and FP regions was greatest for working memory updating, the most complex task. Regarding age-related differences in accuracy, none were observed for Single or Dual tasks, but older adults had poorer accuracy in Memory Updating. More anterior frontal clusters of functional connectivity were observed for older, compared to younger, adults; these were limited to seeds of the two attentional networks. Importantly, increased connectivity in these additional frontal regions in older adults were non-compensatory, because they were associated with detrimental task performance, especially Memory Updating. For the Memory Updating Rest, the younger older contrast resulted in greater DMN seed connectivity to regions in the other two attentional networks, implicating increased reliance on between-network connectivity for the DMN seeds during complex cognitive tasks. Our results also implicate functional connectivity between attentional networks and the cerebellum during cognitive control. Reliability of multiple seeds in the seed-to-voxel connectivity is also discussed.
机译:研究多个功能网络中区域强度和成员的研究主要关注休息状态或单一认知任务。目前研究的目标是调查任务相关的功能连接是否随任务复杂性而变化,以及此连接 - 复杂性关系是否为年龄敏感。我们评估了默认模式网络(DMN)和两个注意力网络的种子 - 体素功能连通性,在三个认知控制任务中增加了复杂性的三个认知控制任务(单一任务,双重任务和记忆更新),跨越年轻人和较旧的成年人(n = 52; n-young = 23; n-thand = 29)。由于不同的维护,切换和更新要求,这三项任务在认知控制需求中变化。所有网络的功能连接,由任务&gt产生;休息对比度,随着年龄和灰质体积而言,随着年龄和灰质的复杂性而增加。此外,对于DMN,CO和FP地区的网络连接,对于工作内存更新,最重要的任务是最重要的。关于年龄相关的准确性差异,对于单一或双重任务,没有观察到的,但老年人的内存更新方面具有较差的准确性。与年龄较大的成年人相比,观察到更旧的前型功能连接的前部常规簇;这些仅限于两个注意力网络的种子。重要的是,在老年人的这些额外的正面区域中增加的连接性是非补偿的,因为它们与有害的任务性能相关,特别是内存更新。对于内存更新&休息,年轻&较旧的对比导致其他两个注意力网络中的区域变得更大的DMN种子连接,这意味着在复杂的认知任务期间对DMN种子的网络连接之间的依赖性增加。我们的结果在认知控制期间,我们的结果也暗示了注意力网络和小脑之间的功能连接。还讨论了种子到体素连接中多种子的可靠性。

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