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The Shared Genetic Basis of Educational Attainment and Cerebral Cortical Morphology

机译:教育达到和脑皮质形态的共同遗传基础

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Individual differences in educational attainment are linked to differences in intelligence, and predict important social, economic, and health outcomes. Previous studies have found common genetic factors that influence educational achievement, cognitive performance and total brain volume (i.e., brain size). Here, in a large sample of participants from the UK Biobank, we investigate the shared genetic basis between educational attainment and fine-grained cerebral cortical morphological features, and associate this genetic variation with a related aspect of cognitive ability. Importantly, we execute novel statistical methods that enable high-dimensional genetic correlation analysis, and compute high-resolution surface maps for the genetic correlations between educational attainment and vertex-wise morphological measurements. We conduct secondary analyses, using the UK Biobank verbal-numerical reasoning score, to confirm that variation in educational attainment that is genetically correlated with cortical morphology is related to differences in cognitive performance. Our analyses relate the genetic overlap between cognitive ability and cortical thickness measurements to bilateral primary motor cortex as well as predominantly left superior temporal cortex and proximal regions. These findings extend our understanding of the neurobiology that connects genetic variation to individual differences in educational attainment and cognitive performance.
机译:教育程度的个人差异与情报的差异有关,并预测了重要的社会,经济和健康结果。以前的研究发现,常见的遗传因素影响教育成就,认知性能和总脑体积(即脑大小)。在这里,在来自英国Biobank的大型参与者中,我们研究了教育培养和细粒脑皮质形态特征的共同遗传基础,并将这种遗传变异与认知能力相关方面相关联。重要的是,我们执行能够实现高维遗传相关性分析的新型统计方法,并计算教育程度和顶点形态测量之间的遗传相关性的高分辨率表面图。我们使用英国Biobank言语 - 数值推理得分进行二次分析,以确认教育程度与皮质形态学的教育程度与认知性能的差异有关。我们的分析将认知能力与皮质厚度测量之间的遗传重叠与双侧初级电机皮层相关,并且主要留下较好的时间皮质和近端区域。这些发现扩展了我们对神经生物学的理解,这些神经生物学将遗传变化与教育程度和认知性能的个人差异联系起来。

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