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Global versus Tract-Specific Components of Cerebral White Matter Integrity: Relation to Adult Age and Perceptual-Motor Speed

机译:脑白质完整性的整体和特定于领域的成分:与成人年龄和知觉运动速度的关系

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摘要

Although age-related differences in white matter have been well documented, the degree to which regional, tract-specific effects can be distinguished from global, brain-general effects is not yet clear. Similarly, the manner in which global and regional differences in white matter integrity contribute to age-related differences in cognition has not been well established. To address these issues, we analyzed diffusion tensor imaging measures from 52 younger adults (18–28) and 64 older adults (60–85). We conducted principal component analysis on each diffusion measure, using data from eight individual tracts. Two components were observed for fractional anisotropy: The first comprised high loadings from the superior longitudinal fasciculi and corticospinal tracts, and the second comprised high loadings from the optic radiations. In contrast, variation in axial, radial, and mean diffusivities yielded a single-component solution in each case, with high loadings from most or all tracts. For fractional anisotropy, the complementary results of multiple components and variability in component loadings across tracts suggest regional variation. However, for the diffusivity indices, the single component with high loadings from most or all of the tracts suggests primarily global, brain-general variation. Further analyses indicated that age was a significant mediator of the relation between each component and perceptual-motor speed. These data suggest that individual differences in white matter integrity, and their relation to age-related differences in perceptual-motor speed, represent influences that are beyond the level of individual tracts, but the extent to which regional or global effects predominate may differ between anisotropy and diffusivity measures.
机译:尽管与年龄有关的白质差异已经有充分的文献记载,但是尚不清楚区域,特定于管道的效应与整体的脑通用效应之间的区别程度。同样,尚未很好地确定白质完整性的全球和区域差异导致与年龄相关的认知差异的方式。为了解决这些问题,我们分析了52位较年轻的成年人(18-28岁)和64位较老的成年人(60-85岁)的扩散张量成像方法。我们使用八个单独区域的数据对每个扩散度量进行了主成分分析。观察到分数各向异性的两个分量:第一个分量是来自上纵向束和皮质脊髓束的高载荷,第二个分量是来自光辐射的高载荷。相反,在每种情况下,轴向,径向和平均扩散率的变化都会产生单组分解决方案,其中大部分或全部管道的载荷较高。对于分数各向异性,多个分量的互补结果和跨道的分量加载的可变性提示区域差异。但是,对于扩散指数,来自大多数或所有管道的高负荷单个组分表明主要是整体的,脑-一般的变化。进一步的分析表明,年龄是每个因素与知觉运动速度之间关系的重要中介。这些数据表明,白质完整性的个体差异以及它们与年龄相关的知觉运动速度差异的关系所代表的影响超出了个体的水平,但是在各向异性之间,区域或全局效应占主导地位的程度可能有所不同和扩散措施。

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