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AGE-RELATED INCREASES IN RIGHT FRONTAL ACTIVATION DURING TASK SWITCHING ARE MEDIATED BY REACTION TIME AND WHITE MATTER MICROSTRUCTURE

机译:任务切换过程中与年龄有关的右前臂活动的增加是由反应时间和白色物质的微观结构决定的

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摘要

Age-related increases in right frontal cortex activation are a common finding in the neuroimaging literature. However, neurocognitive factors contributing to right frontal over-recruitment remain poorly understood. Here we investigated the influence of age-related reaction time (RT) slowing and white matter (WM) microstructure reductions as potential explanatory factors for age-related increases in right frontal activation during task switching. Groups of younger (N = 32) and older (N = 33) participants completed a task switching paradigm while functional magnetic resonance imaging (fMRI) was performed, and rested while diffusion tensor imaging (DTI) was performed. Two right frontal regions of interest (ROIs), the dorsolateral prefrontal cortex (DLPFC) and insula, were selected for further analyses from a common network of regions recruited by both age groups during task switching. Results demonstrated age-related activation increases in both ROIs. In addition, the older adult group showed longer RT and decreased fractional anisotropy in regions of the corpus callosum with direct connections to the fMRI ROIs. Subsequent mediation analyses indicated that age-related increases in right insula activation were mediated by RT slowing and age-related increases in right DLPFC activation were mediated by WM microstructure. Our results suggest that age-related RT slowing and WM microstructure declines contribute to age-related increases in right frontal activation during cognitive task performance.
机译:与年龄相关的右额皮质激活增加是神经影像学文献中的常见发现。但是,导致右额叶过度招募的神经认知因素仍然知之甚少。在这里,我们研究了与年龄有关的反应时间(RT)减慢和白质(WM)微观结构减少的影响,作为任务切换过程中右额叶激活与年龄相关的增加的潜在解释因素。年龄较小(N = 32)和年龄较大(N = 33)的参与者组在执行功能磁共振成像(fMRI)时完成了任务切换范例,在进行扩散张量成像(DTI)时休息了。从两个年龄段在任务切换过程中招募的公共区域网络中,选择了两个感兴趣的右额叶区域(ROIs),即背外侧前额叶皮层(DLPFC)和绝缘体,以进行进一步分析。结果表明,与年龄相关的激活都增加了两个ROI。此外,老年人组在call体区域表现出更长的逆转录反应时间并降低了部分各向异性,与fMRI ROI直接相关。随后的调解分析表明,RT减慢介导了与年龄相关的右岛绝缘激活,而WM的微结构介导了与年龄相关的右DLPFC激活。我们的研究结果表明,与年龄有关的RT减慢和WM微观结构下降导致认知任务执行过程中与年龄有关的右额叶激活增加。

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