首页> 外文会议>2011 8th IEEE International Symposium on Biomedical Imaging: From Nano to Macro >Hierarchical clustering of the genetic connectivity matrix reveals the network topology of gene action on brain microstructure: An N=531 twin study
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Hierarchical clustering of the genetic connectivity matrix reveals the network topology of gene action on brain microstructure: An N=531 twin study

机译:遗传连通性矩阵的层次聚类揭示了基因作用对大脑微结构的网络拓扑:N = 531孪生研究

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Genetic correlation (rg) analysis determines how much of the correlation between two measures is due to common genetic influences. In an analysis of 4 Tesla diffusion tensor images (DTI) from 531 healthy young adult twins and their siblings, we generalized the concept of genetic correlation to determine common genetic influences on white matter integrity, measured by fractional anisotropy (FA), at all points of the brain, yielding an NxN genetic correlation matrix rg(x,y) between FA values at all pairs of voxels in the brain. With hierarchical clustering, we identified brain regions with relatively homogeneous genetic determinants, to boost the power to identify causal single nucleotide polymorphisms (SNP). We applied genome-wide association (GWA) to assess associations between 529,497 SNPs and FA in clusters defined by hubs of the clustered genetic correlation matrix. We identified a network of genes, with a scale-free topology, that influences white matter integrity over multiple brain regions.
机译:遗传相关性(r g )分析确定两种度量之间有多少相关性是由于常见的遗传影响所致。在对来自531名健康的成年双胞胎及其兄弟姐妹的4张Tesla扩散张量图像(DTI)的分析中,我们推广了遗传相关性的概念,以确定在所有点上均由分数各向异性(FA)衡量的对白质完整性的常见遗传影响。在大脑的所有体素对之间,在FA值之间产生一个NxN遗传相关矩阵r g (x,y)。通过分层聚类,我们确定了具有相对同质遗传决定因素的大脑区域,以增强识别因果单核苷酸多态性(SNP)的能力。我们应用了全基因组关联(GWA)来评估529,497个SNP与FA之间的关联,该关联由集群的遗传相关矩阵的集线器定义。我们确定了一个无标度拓扑结构的基因网络,该网络影响多个大脑区域的白质完整性。

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