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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互补对人类皮层折叠结构的影响

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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:回旋是人类皮层的一项基本特性,越来越多的基础和临床神经科学对其进行研究。然而,目前尚不清楚皮质折叠的整体结构是否以及如何随3种交织的解剖学变化源而变化:大脑大小,性别和性染色体剂量(SCD)。在这里,对于跨越7个核型组(XX,XY,XXX,XYY,XXY,XXYY,XXXXY)的375个个体,我们使用结构神经影像学来测量整体的sulmation指数(SI,总的sulcal /皮层外壳面积)以及两个succal的决定因素面积:总沟长和平均沟深。我们详细介绍了性别和SCD在所有折叠指标上的大型且有规律的影响,但显示这些影响实际上与健康中皮质折叠的规范缩放基本一致:较大的人脑由于龈沟相对扩展而导致SI异常高相对于船体面积,这是由于不适当的沟渠加长克服了不成比例的沟渠加深所致。解释这些规范性的异构关系表明:1)男性与女性的大脑大小无关的脑沟延长,以及2)整体折叠结构对SCD不敏感。我们的方法和发现为人类在健康和疾病中皮层折叠的未来研究提供了新的背景。

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