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Heritability of the shape of subcortical brain structures in the general population

机译:一般人群皮层下大脑结构形状的遗传力

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摘要

The volumes of subcortical brain structures are highly heritable, but genetic underpinnings of their shape remain relatively obscure. Here we determine the relative contribution of genetic factors to individual variation in the shape of seven bilateral subcortical structures: the nucleus accumbens, amygdala, caudate, hippocampus, pallidum, putamen and thalamus. In 3,686 unrelated individuals aged between 45 and 98 years, brain magnetic resonance imaging and genotyping was performed. The maximal heritability of shape varies from 32.7 to 53.3% across the subcortical structures. Genetic contributions to shape extend beyond influences on intracranial volume and the gross volume of the respective structure. The regional variance in heritability was related to the reliability of the measurements, but could not be accounted for by technical factors only. These findings could be replicated in an independent sample of 1,040 twins. Differences in genetic contributions within a single region reveal the value of refined brain maps to appreciate the genetic complexity of brain structures.
机译:皮质下大脑结构的体积高度可遗传,但其形状的遗传基础仍然相对模糊。在这里,我们确定遗传因素对七个双边皮层下结构形状的个体变化的相对贡献:伏伏核,杏仁核,尾状,海马,苍白球,壳状核和丘脑。在3,686名年龄在45至98岁之间的无关个体中,进行了脑磁共振成像和基因分型。在整个皮层下结构中,形状的最大遗传力从32.7%到53.3%不等。形状的遗传贡献超出了对颅内体积和相应结构总体积的影响。遗传力的区域差异与测量的可靠性有关,但不能仅由技术因素来解释。这些发现可以复制到1,040个双胞胎的独立样本中。单个区域内遗传贡献的差异揭示了精致的大脑图谱对欣赏大脑结构的遗传复杂性的价值。

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