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APPROXIMATING PRINCIPAL GENETIC COMPONENTS OF SUBCORTICAL SHAPE

机译:亚皮层形状的主要遗传成分的逼近

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摘要

Optimal representations of the genetic structure underlying complex neuroimaging phenotypes lie at the heart of our quest to discover the genetic code of the brain. Here, we suggest a strategy for achieving such a representation by decomposing the genetic covariance matrix of complex phenotypes into maximally heritable and genetically independent components. We show that such a representation can be approximated well with eigenvectors of the genetic covariance based on a large family study. Using 520 twin pairs from the QTIM dataset, we estimate 500 principal genetic components of 54,000 vertex-wise shape features representing fourteen subcortical regions. We show that our features maintain their desired properties in practice. Further, the genetic components are found to be significantly associated with the CLU and PICALM genes in an unrelated Alzheimer’s Disease (AD) dataset. The same genes are not significantly associated with other volume and shape measures in this dataset.
机译:复杂神经影像表型的遗传结构的最佳表示形式是我们探索大脑遗传密码的追求的核心。在这里,我们建议通过将复杂表型的遗传协方差矩阵分解为最大可遗传和遗传独立的成分来实现这种表示的策略。我们表明,基于大型家庭研究,可以用遗传协方差的特征向量很好地近似这种表示。使用来自QTIM数据集的520对孪生对,我们估计了代表14个皮层下区域的54,000个顶点方向形状特征的500个主要遗传成分。我们证明了我们的功能在实践中保持了其所需的属性。此外,在无关的阿尔茨海默氏病(AD)数据集中,发现遗传成分与CLU和PICALM基因显着相关。在该数据集中,相同的基因与其他体积和形状度量没有显着关联。

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