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与年龄相关的功能性脑网络分离差异与一系列脑血管、结构和认知效应相一致。

Age-related differences in functional brain network segregation are consistent with a cascade of cerebrovascular, structural, and cognitive effects.

作者信息

Kong Tania S, Gratton Caterina, Low Kathy A, Tan Chin Hong, Chiarelli Antonio M, Fletcher Mark A, Zimmerman Benjamin, Maclin Edward L, Sutton Bradley P, Gratton Gabriele, Fabiani Monica

机构信息

Beckman Institute, University of Illinois at Urbana-Champaign, IL, USA.

Department of Psychology, Northwestern University, IL, USA.

出版信息

Netw Neurosci. 2020 Feb 1;4(1):89-114. doi: 10.1162/netn_a_00110. eCollection 2020.

Abstract

Age-related declines in cognition are associated with widespread structural and functional brain changes, including changes in resting-state functional connectivity and gray and white matter status. Recently we have shown that the elasticity of cerebral arteries also explains some of the variance in cognitive and brain health in aging. Here, we investigated how network segregation, cerebral arterial elasticity (measured with pulse-DOT-the arterial pulse based on diffuse optical tomography) and gray and white matter status jointly account for age-related differences in cognitive performance. We hypothesized that at least some of the variance in brain and cognitive aging is linked to reduced cerebrovascular elasticity, leading to increased cortical atrophy and white matter abnormalities, which, in turn, are linked to reduced network segregation and decreases in cognitive performance. Pairwise comparisons between these variables are consistent with an exploratory hierarchical model linking them, especially when focusing on association network segregation (compared with segregation in sensorimotor networks). These findings suggest that preventing or slowing age-related changes in one or more of these factors may induce a neurophysiological cascade beneficial for preserving cognition in aging.

摘要

与年龄相关的认知能力下降与广泛的大脑结构和功能变化有关,包括静息态功能连接以及灰质和白质状态的变化。最近我们发现,脑动脉弹性也能解释衰老过程中认知和大脑健康方面的一些差异。在此,我们研究了网络分离、脑动脉弹性(通过基于扩散光学断层扫描的动脉脉搏——脉冲-DOT测量)以及灰质和白质状态如何共同解释与年龄相关的认知表现差异。我们假设,大脑和认知衰老的至少部分差异与脑血管弹性降低有关,这会导致皮质萎缩增加和白质异常,进而与网络分离减少和认知表现下降有关。这些变量之间的成对比较与将它们联系起来的探索性层次模型一致,尤其是在关注关联网络分离时(与感觉运动网络中的分离相比)。这些发现表明,预防或减缓这些因素中一个或多个与年龄相关的变化,可能会引发一种有利于在衰老过程中保持认知的神经生理级联反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2463/7006874/195acdcb6318/netn-04-89-g001.jpg

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