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健康老年人在高速判别任务中默认模式网络的动态受限:与神经认知状态和模拟驾驶行为的关联。

Default-mode network dynamics are restricted during high speed discrimination in healthy aging: Associations with neurocognitive status and simulated driving behavior.

机构信息

Neuroimaging Laboratory, Division of Neurosciences, Centre for Applied Medical Research (CIMA), University of Navarra, Pamplona, 31008, Spain.

School of Education and Psychology, University of Navarra, Pamplona, Spain.

出版信息

Hum Brain Mapp. 2018 Nov;39(11):4196-4212. doi: 10.1002/hbm.24240. Epub 2018 Jul 1.

Abstract

Numerous daily tasks, including car driving, require fine visuospatial tuning. One such visuospatial ability, speed discrimination, declines with aging but its neural underpinnings remain unknown. In this study, we use fMRI to explore the effect of aging during a high speed discrimination task and its neural underpinnings, along with a complete neuropsychological assessment and a simulated driving evaluation in order to examine how they interact with each other through a multivariate regression approach. Beyond confirming that high speed discrimination performance is diminished in the elderly, we found that this deficit might be partly due to a lack of modulation in the activity and connectivity of the default mode network (DMN) in this age group, as well as an over-recruitment of frontoparietal and cerebellar regions, possibly as a compensatory mechanism. In addition, younger adults tended to drive at faster speeds, a behavior that was associated to adequate DMN dynamics and executive functioning, an effect that seems to be lost in the elderly. In summary, these results reveal how age-related declines in fine visuospatial abilities, such as high speed discrimination, were distinctly mediated by DMN functioning, a mechanism also associated to speeding behavior in a driving simulator.

摘要

许多日常任务,包括驾驶汽车,都需要精细的视空间调整。视空间能力之一的速度辨别能力随着年龄的增长而下降,但其神经基础仍不清楚。在这项研究中,我们使用 fMRI 来探索在高速辨别任务期间衰老的影响及其神经基础,同时进行全面的神经心理学评估和模拟驾驶评估,以便通过多元回归方法检查它们如何相互作用。除了确认老年人的高速辨别表现下降之外,我们还发现这种缺陷可能部分归因于该年龄组的默认模式网络 (DMN) 的活动和连通性缺乏调节,以及额顶叶和小脑区域的过度招募,可能是一种代偿机制。此外,年轻人往往以更快的速度驾驶,这种行为与 DMN 动态和执行功能有关,而在老年人中这种效应似乎消失了。总之,这些结果揭示了精细视空间能力(如高速辨别)的年龄相关下降是如何被 DMN 功能明显介导的,这种机制也与驾驶模拟器中的超速行为有关。

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