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首页> 外文期刊>Biological psychiatry >Cortical thickness is influenced by regionally specific genetic factors.
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Cortical thickness is influenced by regionally specific genetic factors.

机译:皮质厚度受区域特定遗传因素影响。

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摘要

BACKGROUND: Although global brain structure is highly heritable, there is still variability in the magnitude of genetic influences on the size of specific regions. Yet, little is known about the patterning of those genetic influences, i.e., whether the same genes influence structure throughout the brain or whether there are regionally specific sets of genes. METHODS: We mapped the heritability of cortical thickness throughout the brain using three-dimensional structural magnetic resonance imaging in 404 middle-aged male twins. To assess the amount of genetic overlap between regions, we then mapped genetic correlations between three selected seed points and all other points comprising the continuous cortical surface. RESULTS: There was considerable regional variability in the magnitude of genetic influences on cortical thickness. The primary visual (V1) seed point had strong genetic correlations with posterior sensory and motor areas. The anterior temporal seed point had strong genetic correlations with anterior frontal regions but not with V1. The middle frontal seed point had strong genetic correlations with inferior parietal regions. CONCLUSIONS: These results provide strong evidence of regionally specific patterns rather than a single, global genetic factor. The patterns are largely consistent with a division between primary and association cortex, as well as broadly defined patterns of brain gene expression, neuroanatomical connectivity, and brain maturation trajectories, but no single explanation appears to be sufficient. The patterns do not conform to traditionally defined brain structure boundaries. This approach can serve as a step toward identifying novel phenotypes for genetic association studies of psychiatric disorders and normal and pathological cognitive aging.
机译:背景:尽管全球大脑结构具有高度遗传性,但是遗传影响的大小对特定区域的大小仍然存在差异。然而,关于这些遗传影响的模式知之甚少,即,相同的基因是否影响整个大脑的结构,或者是否存在区域特定的基因集。方法:我们在404名中年男性双胞胎中使用三维结构磁共振成像技术绘制了整个大脑皮层厚度的遗传力。为了评估区域之间的遗传重叠量,我们然后绘制了三个选定的种子点与组成连续皮质表面的所有其他点之间的遗传相关性。结果:遗传影响皮层厚度的幅度存在相当大的区域差异。初级视觉(V1)种子点与后感觉和运动区域有很强的遗传相关性。前颞种子点与前额叶区域有很强的遗传相关性,而与V1没有。额叶中部种子点与顶壁下部区域有很强的遗传相关性。结论:这些结果提供了区域特定模式的有力证据,而不是单一的全球遗传因素。这些模式在很大程度上与初级和关联皮层之间的划分以及大脑基因表达,神经解剖学连通性和大脑成熟轨迹的广泛定义的模式一致,但是没有任何单一的解释似乎是足够的。这些模式不符合传统上定义的大脑结构边界。这种方法可以为鉴定精神疾病,正常和病理性认知衰老的遗传关联研究确定新的表型迈出一步。

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