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Age‐related decline in task switching is linked to both global and tract‐specific changes in white matter microstructure

机译:与年龄相关的任务转换下降与白质微观结构的整体变化和特定领域的变化有关

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摘要

Task‐switching performance relies on a broadly distributed frontoparietal network and declines in older adults. In this study, they investigated whether this age‐related decline in task switching performance was mediated by variability in global or regional white matter microstructural health. Seventy cognitively intact adults (43–87 years) completed a cued‐trials task switching paradigm. Microstructural white matter measures were derived using diffusion tensor imaging (DTI) analyses on the diffusion‐weighted imaging (DWI) sequence. Task switching performance decreased with increasing age and radial diffusivity (RaD), a measure of white matter microstructure that is sensitive to myelin structure. RaD mediated the relationship between age and task switching performance. However, the relationship between RaD and task switching performance remained significant when controlling for age and was stronger in the presence of cardiovascular risk factors. Variability in error and RT mixing cost were associated with RaD in global white matter and in frontoparietal white matter tracts, respectively. These findings suggest that age‐related increase in mixing cost may result from both global and tract‐specific disruption of cerebral white matter linked to the increased incidence of cardiovascular risks in older adults. . © 2016 Wiley Periodicals, Inc.
机译:任务交换性能依赖于广泛分布的额叶前额网络,而老年人的衰落率下降。在这项研究中,他们调查了这种与年龄相关的任务转换绩效下降是否是由全球或区域白质微结构健康状况的变化所介导的。七十名认知完好的成年人(43-87岁)完成了提示式任务切换范例。使用弥散张量成像(DWI)序列的弥散张量成像(DTI)分析得出微结构白质测度。任务切换性能随年龄和径向扩散率(RaD)的增加而降低,径向扩散率是一种对髓磷脂结构敏感的白质微观结构的度量。 RaD介导了年龄与任务切换绩效之间的关系。但是,在控制年龄时,RaD与任务切换性能之间的关系仍然很明显,并且在存在心血管危险因素的情况下更强。误差的差异和RT混合成本分别与全球白质和额顶白质区的RaD相关。这些发现表明,与年龄相关的混合成本增加可能是由于大脑白质的整体和特定区域破坏与老年人心血管风险发生率增加相关。 。 ©2016 Wiley Periodicals,Inc.

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