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脑电图连通性和网络拓扑结构的年龄相关差异。

Age-related differences in electroencephalogram connectivity and network topology.

作者信息

Knyazev Gennady G, Volf Nina V, Belousova Ludmila V

机构信息

State Research Institute of Physiology and Basic Medicine, Siberian Branch of the Russian Academy of Medical Sciences, Novosibirsk, Russia.

State Research Institute of Physiology and Basic Medicine, Siberian Branch of the Russian Academy of Medical Sciences, Novosibirsk, Russia; Novosibirsk State University, Novosibirsk, Russia.

出版信息

Neurobiol Aging. 2015 May;36(5):1849-59. doi: 10.1016/j.neurobiolaging.2015.02.007. Epub 2015 Feb 13.

Abstract

To better understand age-related differences in brain function and behavior, connectivity between brain regions was estimated from electroencephalogram source time series in eyes closed versus eyes open resting condition. In beta band, decrease of connectivity upon eyes opening was more pronounced in younger than in older participants. The extent of this decrease was associated with reaction time in attention tasks, and this relationship was fully mediated by participants' age, implying that physiological processes, which lead to age-related slowing, include changes in beta reactivity. Graph-theoretical analysis showed a decrease of modularity and clustering in beta and gamma band networks in older adults, implying that age makes brain networks more random. The overall number of nodes identified as hubs in posterior cortical regions decreased in older participants. At the same time, increase of connectedness of anterior nodes, probably reflecting compensatory activation of the anterior attentional system, was observed in beta-band network of older adults. These findings show that normal aging mostly affects interactions in beta band, which are probably involved in attentional processes.

摘要

为了更好地理解大脑功能和行为的年龄相关差异,在闭眼和睁眼静息状态下,根据脑电图源时间序列估计脑区之间的连接性。在β波段,睁眼时连接性的降低在年轻参与者中比在年长参与者中更为明显。这种降低的程度与注意力任务中的反应时间相关,并且这种关系完全由参与者的年龄介导,这意味着导致与年龄相关的反应减慢的生理过程包括β反应性的变化。图论分析表明,老年人的β和γ波段网络中的模块性和聚类性降低,这意味着年龄使脑网络更加随机。在年长参与者中,后皮质区域被识别为枢纽的节点总数减少。同时,在老年人的β波段网络中观察到前节点连接性的增加,这可能反映了前注意系统的代偿性激活。这些发现表明,正常衰老主要影响β波段的相互作用,而β波段的相互作用可能参与了注意力过程。

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