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首页> 外文期刊>Cerebral cortex >Influences of Brain Size, Sex, and Sex Chromosome Complement on the Architecture of Human Cortical Folding
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Influences of Brain Size, Sex, and Sex Chromosome Complement on the Architecture of Human Cortical Folding

机译:脑大小,性别和性染色体的影响对人皮质折叠建筑的补充

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摘要

Gyrification is a fundamental property of the human cortex that is increasingly studied by basic and clinical neuroscience. However, it remains unclear if and how the global architecture of cortical folding varies with 3 interwoven sources of anatomical variation: brain size, sex, and sex chromosome dosage (SCD). Here, for 375 individuals spanning 7 karyotype groups (XX, XY, XXX, XYY, XXY, XXYY, XXXXY), we use structural neuroimaging to measure a global sulcation index ( SI, total sulcal/cortical hull area) and both determinants of sulcal area: total sulcal length and mean sulcal depth. We detail large and patterned effects of sex and SCD across all folding metrics, but show that these effects are in fact largely consistent with the normative scaling of cortical folding in health: larger human brains have disproportionately high SI due to a relative expansion of sulcal area versus hull area, which arises because disproportionate sulcal lengthening overcomes a lack of proportionate sulcal deepening. Accounting for these normative allometries reveals 1) brain size-independent sulcal lengthening in males versus females, and 2) insensitivity of overall folding architecture to SCD. Our methodology and findings provide a novel context for future studies of human cortical folding in health and disease.
机译:Gyrification是由基本和临床神经科学越来越多地研究的人皮层的基本属性。然而,它仍然尚不清楚,如果皮质折叠的全球架构如何随着3个交织的解剖变异来源而变化:脑大小,性别和性染色体剂量(SCD)。在这里,对于375个跨型核型组(XY,XY,XXX,XYY,XXY,XXYY,XXXX),我们使用结构神经影像术来测量全球肺部指数(Si,总硫/皮质船体区域)和硫都的决定簇面积:总硫的长度和平均硫。我们对所有折叠度量的性别和SCD进行了详细信息,但表明这些效果实际上与健康中皮质折叠的规范性缩放相一致:由于硫的相对膨胀,较大的人性大脑具有不成比例的高Si与船体区​​域产生,因为不成比例的沟延长克服缺乏比例的硫化。这些规范性血换会计揭示1)脑大小无关,雄性与女性延长,2)整体折叠架构对SCD的不敏感性。我们的方法论和调查结果为健康和疾病中的人皮质折叠的未来研究提供了一种新颖的背景。

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