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神经认知衰老中的脱节根源:脑白质完整性、静息态功能连接性和白质高信号体积

Sources of disconnection in neurocognitive aging: cerebral white-matter integrity, resting-state functional connectivity, and white-matter hyperintensity volume.

作者信息

Madden David J, Parks Emily L, Tallman Catherine W, Boylan Maria A, Hoagey David A, Cocjin Sally B, Packard Lauren E, Johnson Micah A, Chou Ying-Hui, Potter Guy G, Chen Nan-Kuei, Siciliano Rachel E, Monge Zachary A, Honig Jesse A, Diaz Michele T

机构信息

Brain Imaging and Analysis Center, Duke University Medical Center, Durham, NC, USA; Department of Psychiatry and Behavioral Sciences, Duke University Medical Center, Durham, NC, USA.

Brain Imaging and Analysis Center, Duke University Medical Center, Durham, NC, USA; Department of Psychiatry and Behavioral Sciences, Duke University Medical Center, Durham, NC, USA.

出版信息

Neurobiol Aging. 2017 Jun;54:199-213. doi: 10.1016/j.neurobiolaging.2017.01.027. Epub 2017 Mar 18.

Abstract

Age-related decline in fluid cognition can be characterized as a disconnection among specific brain structures, leading to a decline in functional efficiency. The potential sources of disconnection, however, are unclear. We investigated imaging measures of cerebral white-matter integrity, resting-state functional connectivity, and white-matter hyperintensity volume as mediators of the relation between age and fluid cognition, in 145 healthy, community-dwelling adults 19-79 years of age. At a general level of analysis, with a single composite measure of fluid cognition and single measures of each of the 3 imaging modalities, age exhibited an independent influence on the cognitive and imaging measures, and the imaging variables did not mediate the age-cognition relation. At a more specific level of analysis, resting-state functional connectivity of sensorimotor networks was a significant mediator of the age-related decline in executive function. These findings suggest that different levels of analysis lead to different models of neurocognitive disconnection, and that resting-state functional connectivity, in particular, may contribute to age-related decline in executive function.

摘要

与年龄相关的流体认知能力下降可表现为特定脑结构之间的联系中断,导致功能效率降低。然而,联系中断的潜在根源尚不清楚。我们对145名年龄在19至79岁之间、居住在社区的健康成年人,研究了脑白质完整性、静息态功能连接性和白质高信号体积的成像指标,将其作为年龄与流体认知之间关系的中介因素。在总体分析层面,采用单一的流体认知综合测量指标以及三种成像方式各自的单一测量指标,年龄对认知和成像指标呈现出独立影响,且成像变量并未介导年龄与认知的关系。在更具体的分析层面,感觉运动网络的静息态功能连接性是执行功能与年龄相关下降的一个重要中介因素。这些发现表明,不同层面的分析会导致不同的神经认知联系中断模型,特别是静息态功能连接性,可能是执行功能与年龄相关下降的原因。

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