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The Indirect Effect of Age Group on Switch Costs via Gray Matter Volume and Task-Related Brain Activity

机译:年龄组通过物质量和与任务相关的大脑活动对转换成本的间接影响

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Healthy aging simultaneously affects brain structure, brain function, and cognition. These effects are often investigated in isolation ignoring any relationships between them. It is plausible that age related declines in cognitive performance are the result of age-related structural and functional changes. This straightforward idea is tested in within a conceptual research model of cognitive aging. The current study tested whether age-related declines in task-performance were explained by age-related differences in brain structure and brain function using a task-switching paradigm in 175 participants. Sixty-three young and 112 old participants underwent MRI scanning of brain structure and brain activation. The experimental task was an executive context dual task with switch costs in response time as the behavioral measure. A serial mediation model was applied voxel-wise throughout the brain testing all pathways between age group, gray matter volume, brain activation and increased switch costs, worsening performance. There were widespread age group differences in gray matter volume and brain activation. Switch costs also significantly differed by age group. There were brain regions demonstrating significant indirect effects of age group on switch costs via the pathway through gray matter volume and brain activation. These were in the bilateral precuneus, bilateral parietal cortex, the left precentral gyrus, cerebellum, fusiform, and occipital cortices. There were also significant indirect effects via the brain activation pathway after controlling for gray matter volume. These effects were in the cerebellum, occipital cortex, left precentral gyrus, bilateral supramarginal, bilateral parietal, precuneus, middle cingulate extending to medial superior frontal gyri and the left middle frontal gyri. There were no significant effects through the gray matter volume alone pathway. These results demonstrate that a large proportion of the age group effect on switch costs can be attributed to individual differences in gray matter volume and brain activation. Therefore, age-related neural effects underlying cognitive control are a complex interaction between brain structure and function. Furthermore, the analyses demonstrate the feasibility of utilizing multiple neuroimaging modalities within a conceptual research model of cognitive aging.
机译:健康的衰老同时会影响大脑结构,大脑功能和认知能力。通常会孤立地研究这些影响,而忽略它们之间的任何关系。年龄相关的认知能力下降可能是与年龄相关的结构和功能变化的结果。这个简单的想法在认知衰老的概念研究模型中进行了测试。当前的研究使用任务转换范式在175名参与者中测试了与年龄相关的任务绩效下降是否可以通过与年龄相关的大脑结构和脑功能差异来解释。六十三名年轻参与者和112名老年参与者接受了大脑结构和大脑激活的MRI扫描。实验任务是执行上下文双重任务,以响应时间中的转换成本作为行为度量。在整个大脑中以体素方式应用了串行调解模型,测试了年龄组,灰质量,大脑激活和增加的转换成本之间的所有路径,从而恶化了性能。灰质量和大脑激活存在广泛的年龄组差异。转换成本也因年龄段而有很大差异。有大脑区域显示了年龄组通过灰质量和大脑激活途径对转换成本的间接影响。这些分别在双侧前突,双侧顶叶皮层,左中前回,小脑,梭形和枕叶皮质。控制灰质体积后,还存在通过大脑激活途径产生的显着间接作用。这些影响包括小脑,枕叶皮质,左前中央回,双侧上颌,双侧顶,前突,中扣带延伸至内侧额上回和左侧额中回。仅通过灰质物质体积途径没有显着影响。这些结果表明,年龄组对转换成本的影响很大一部分可归因于灰质量和大脑激活的个体差异。因此,认知控制基础上与年龄有关的神经效应是大脑结构与功能之间的复杂相互作用。此外,分析证明了在认知衰老的概念研究模型内利用多种神经影像学方法的可行性。

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