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相似多于差异:青少年早期大脑结构中性别内和性别间差异的比较

More similarity than difference: comparison of within- and between-sex variance in early adolescent brain structure.

作者信息

Torgerson Carinna, Bottenhorn Katherine, Ahmadi Hedyeh, Choupan Jeiran, Herting Megan M

机构信息

University of Southern California.

出版信息

Res Sq. 2024 Oct 17:rs.3.rs-4947186. doi: 10.21203/rs.3.rs-4947186/v1.

Abstract

BACKGROUND

Adolescent neuroimaging studies of sex differences in the human brain predominantly examine mean differences between males and females. This focus on between-groups differences without probing relative distributions and similarities may contribute to both conflation and overestimation of sex differences and sexual dimorphism in the developing human brain.

METHODS

We aimed to characterize the variance in brain macro- and micro-structure in early adolescence as it pertains to sex at birth using a large sample of 9-11 year-olds from the Adolescent Brain Cognitive Development (ABCD) Study (N=7,723). Specifically, for global and regional estimates of gray and white matter volume, cortical thickness, and white matter microstructure (i.e., fractional anisotropy and mean diffusivity), we examined: within- and between-sex variance, overlap between male and female distributions, inhomogeneity of variance via the Fligner-Killeen test, and an analysis of similarities (ANOSIM). For completeness, we examined these sex differences using both uncorrected (raw) brain estimates and residualized brain estimates after using mixed-effects modeling to account for age, pubertal development, socioeconomic status, race, ethnicity, MRI scanner manufacturer, and total brain volume, where applicable.

RESULTS

The overlap between male and female distributions was universally greater than the difference (overlap coefficient range: 0.585 - 0.985) and the ratio of within-sex and between-sex differences was similar (ANOSIM R range: -0.001 - 0.117). All cortical and subcortical volumes showed significant inhomogeneity of variance, whereas a minority of brain regions showed significant sex differences in variance for cortical thickness, white matter volume, fractional anisotropy, and mean diffusivity. Inhomogeneity of variance was reduced after accounting for other sources of variance. Overlap coefficients were larger and ANOSIM R values were smaller for residualized outcomes, indicating greater within- and smaller between-sex differences once accounting for other covariates.

CONCLUSIONS

Reported sex differences in early adolescent human brain structure may be driven by disparities in variance, rather than binary, sex-based phenotypes. Contrary to the popular view of the brain as sexually dimorphic, we found more similarity than difference between sexes in all global and regional measurements of brain structure examined. This study builds upon previous findings illustrating the importance of considering variance when examining sex differences in brain structure.

摘要

背景

关于人类大脑性别差异的青少年神经影像学研究主要考察男性和女性之间的平均差异。这种对组间差异的关注,而不探究相对分布和相似性,可能会导致对发育中的人类大脑性别差异和性二态性的混淆和高估。

方法

我们旨在利用来自青少年大脑认知发展(ABCD)研究的9至11岁大样本(N = 7,723),来描述青春期早期大脑宏观和微观结构的差异,这些差异与出生时的性别有关。具体而言,对于灰质和白质体积、皮质厚度以及白质微观结构(即分数各向异性和平均扩散率)的全局和区域估计,我们考察了:性别内和性别间的差异、男性和女性分布之间的重叠、通过弗利格纳 - 基林检验的方差不均匀性以及相似性分析(ANOSIM)。为了全面起见,我们使用未校正(原始)的大脑估计值以及在使用混合效应模型考虑年龄、青春期发育、社会经济地位、种族、民族、MRI扫描仪制造商和全脑体积(如适用)后得到的残差大脑估计值来检验这些性别差异。

结果

男性和女性分布之间的重叠普遍大于差异(重叠系数范围:0.585 - 0.985),性别内差异与性别间差异的比率相似(ANOSIM R范围:-0.001 - 0.117)。所有皮质和皮质下体积均显示出显著的方差不均匀性,而少数脑区在皮质厚度、白质体积、分数各向异性和平均扩散率的方差方面显示出显著的性别差异。在考虑其他方差来源后,方差不均匀性有所降低。对于残差结果,重叠系数更大,ANOSIM R值更小,这表明在考虑其他协变量后,性别内差异更大,性别间差异更小。

结论

青春期早期人类大脑结构中所报告的性别差异可能是由方差差异驱动的,而不是基于二元性别的表型。与将大脑视为具有性二态性的普遍观点相反,我们发现在所检查的大脑结构的所有全局和区域测量中,两性之间的相似性多于差异。本研究基于先前的发现,说明了在研究大脑结构性别差异时考虑方差的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c318/11527358/63cd73c96b0f/nihpp-rs4947186v1-f0001.jpg

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