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Heritability of white matter microstructure in late middle age: A twin study of tract-based fractional anisotropy and absolute diffusivity indices

机译:中年后期白质微观结构的遗传力:基于道的分数各向异性和绝对扩散指数的双重研究

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摘要

There is evidence that differences among individuals in white matter microstructure, as measured with diffusion tensor imaging (DTI), are under genetic control. However, little is known about the relative contribution of genetic and environmental effects on different diffusivity indices among late middle-aged adults. Here, we examined the magnitude of genetic influences for fractional anisotropy (FA), and mean (MD), axial (AD), and radial (RD) diffusivities in male twins aged 56–66 years old. Using an atlas-based registration approach to delineate individual white matter tracts, we investigated mean DTI-based indices within the corpus callosum, 12 bilateral tracts and all these regions of interest combined. All four diffusivity indices had high heritability at the global level (72% – 80%). The magnitude of genetic effects in individual tracts varied from 0–82% for FA, 0–81% for MD, 8–77% for AD, and 0–80% for RD with most of the tracts showing significant heritability estimates. Despite the narrow age range of this community-based sample, age was correlated with all four diffusivity indices at the global level. In sum, all diffusion indices proved to have substantial heritability for most of the tracts and the heritability estimates were similar in magnitude for different diffusivity measures. Future studies could aim to discover the particular set of genes that underlie the significant heritability of white matter microstructure.
机译:有证据表明,通过扩散张量成像(DTI)测量的白质微观结构个体之间的差异处于遗传控制之下。但是,关于中晚期成年人中遗传和环境效应对不同扩散系数的相对贡献知之甚少。在这里,我们研究了年龄在56-66岁的双胞胎中的分数各向异性(FA),平均(MD),轴向(AD)和径向(RD)扩散的遗传影响量。使用基于图谱的注册方法来描绘单个白质束,我们研究了call体,12个双边束和所有这些感兴趣区域的平均基于DTI的指数。在全球范围内,所有四个扩散指数均具有较高的遗传力(72%– 80%)。个别区域的遗传效应幅度从FA的0-82%,MD的0-81%,AD的8-77%和RD的0-80%不​​等,大多数区域显示出显着的遗传力估计。尽管这个基于社区的样本的年龄范围狭窄,但年龄与全球范围内所有四个扩散系数相关。总而言之,事实证明,所有扩散指数在大多数区域都具有相当大的遗传力,而对于不同的扩散率测度,遗传力估计值的大小相似。未来的研究可能旨在发现构成白质微观结构显着遗传力的特定基因集。

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