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首页> 外文期刊>Neurobiology of Aging: Experimental and Clinical Research >Age differences in the functional interactions among the default, frontoparietal control, and dorsal attention networks
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Age differences in the functional interactions among the default, frontoparietal control, and dorsal attention networks

机译:违约,前部控制和背部注意网络之间的功能交互年龄差异

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Older adults typically show weaker functional connectivity (FC) within brain networks compared with young adults, but stronger functional connections between networks. Our primary aim here was to use a graph theoretical approach to identify age differences in the FC of 3 networks-default mode network (DMN), dorsal attention network, and frontoparietal control (FPC)-during rest and task conditions and test the hypothesis that age differences in the FPC would influence age differences in the other networks, consistent with its role as a cognitive "switch." At rest, older adults showed lower clustering values compared with the young, and both groups showed more between-network connections involving the FPC than the other 2 networks, but this difference was greater in the older adults. Connectivity within the DMN was reduced in older compared with younger adults. Consistent with our hypothesis, between-network connections of the FPC at rest predicted the age-related reduction in connectivity within the DMN. There was no age difference in within-network FC during the task (after removing the specific task effect), but between-network connections were greater in older adults than in young adults for the FPC and dorsal attention network. In addition, age reductions were found in almost all the graph metrics during the task condition, including clustering and modularity. Finally, age differences in between-network connectivity of the FPC during both rest and task predicted cognitive performance. These findings provide additional evidence of less within-network but greater between-network FC in older adults during rest but also show that these age differences can be altered by the residual influence of task demands on background connectivity. Our results also support a role for the FPC as the regulator of other brain networks in the service of cognition. Critically, the link between age differences in inter-network connections of the FPC and DMN connectivity, and the link between FPC connectivity and performance, support the hypothesis that FC of the FPC influences the expression of age differences in other networks, as well as differences in cognitive function. (C) 2016 Elsevier Inc. All rights reserved.
机译:与年轻成年人相比,老年人通常在脑网络中显示较弱的功能连接(FC),但网络之间的功能性更强。我们的主要目标是使用图形理论方法来识别3网络 - 默认模式网络(DMN),背部注意网络和前迁徙(FPC)的FC中的年龄差异 - 静止和任务条件,并测试假设FPC的年龄差异会影响其他网络的年龄差,与其作为认知“开关”的作用一致。在休息时,老年人与年轻人相比,较低的聚类价值较低,两组在涉及FPC的网络连接中比其他2网络相比,这两组都在涉及FPC,但在老年人中,这种差异更大。与年轻成年人相比,DMN内的连接减少。符合我们的假设,FPC的网络连接静止地预测DMN内连接的年龄相关降低。在任务期间,网络内部FC内没有年龄差异(删除特定任务效果),但在旧成年人之间的网络连接比FPC和背部注意网络的年轻成年人之间更大。此外,在任务条件期间几乎所有图形指标都发现了年龄缩减,包括聚类和模块化。最后,在休息和任务期间FPC之间的网络连接之间的年龄差异预测认知性能。这些调查结果提供了额外的证据,其网络内部较少,但在休息期间,老年人的网络FC较大,但也表明可以通过对背景连接的任务需求的剩余影响来改变这些年龄差异。我们的业绩还支持FPC作为认知服务中其他大脑网络的监管机构的作用。批判密地,FPC和DMN连接间网络间连接之间的年龄差异的联系,以及FPC连接性和性能之间的链路,支持FPC FC的假设影响其他网络的年龄差异的表达,以及差异在认知功能中。 (c)2016年Elsevier Inc.保留所有权利。

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