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超越体积:揭示人类大脑几何结构的遗传学奥秘。

Beyond volume: Unraveling the genetics of human brain geometry.

作者信息

Primus Sabrina A, Hoffstaedter Felix, Raimondo Federico, Eickhoff Simon B, Winkelmann Juliane, Oexle Konrad, Patil Kaustubh R

机构信息

Institute of Neurogenomics, Helmholtz Zentrum München, German Research Center for Environmental Health, Neuherberg, Germany.

Neurogenetic Systems Analysis Group, Institute of Neurogenomics, Helmholtz Zentrum München, German Research Center for Environmental Health, Neuherberg, Germany.

出版信息

Sci Adv. 2025 Jun 13;11(24):eadr1644. doi: 10.1126/sciadv.adr1644.

Abstract

Brain geometry affects brain function. A quantitative encoding of form is provided by the Laplace-Beltrami operator's spectrum of eigenvalues (LBS). We examined LBS genetics of 22 subcortical brain structures and cerebellum in 19,862 healthy White-British UK Biobank participants by multivariate genome-wide association study on the first 49 eigenvalues each. Controlling for surface and volume, we identified 80 unique variants influencing the shapes of one or several structures, with the highest yield (37 variants) for brain stem. The previously known influence of several of these loci on basic morphology, such as volume, is thus shown to also influence complex shape. Known associations of observed loci with blood pressure, neurodegeneration, alcohol consumption, and mental disorders hint at preclinical stages of these conditions potentially mediating the genetic effect on brain morphology. Significant correlations between LBS of several brain structures and the polygenic risks of hypertension, ischemic stroke, and schizophrenia evince brain shapes as early biomarkers.

摘要

脑几何结构影响脑功能。拉普拉斯 - 贝尔特拉米算子的特征值谱(LBS)提供了一种形式的定量编码。我们通过对19862名健康的英国白种人英国生物银行参与者的22个皮质下脑结构和小脑的LBS进行多变量全基因组关联研究,对每个结构的前49个特征值进行了分析。在控制表面积和体积的情况下,我们确定了80个独特的变异体,这些变异体影响一个或多个结构的形状,其中脑干的变异体产量最高(37个变异体)。因此,先前已知的这些基因座中的几个对诸如体积等基本形态的影响,也被证明会影响复杂形状。观察到的基因座与血压、神经退行性变、酒精消费和精神障碍的已知关联表明,这些疾病的临床前阶段可能介导了对脑形态的遗传效应。几个脑结构的LBS与高血压、缺血性中风和精神分裂症的多基因风险之间的显著相关性表明脑形状是早期生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb6c/12165004/6127ef8a9911/sciadv.adr1644-f1.jpg

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