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Testing relationships between multimodal modes of brain structural variation and age, sex and polygenic scores for neuroticism in children and adolescents

机译:在儿童和青少年中脑结构变异和年龄,性别和多基因分数的多峰模式与青少年的关系

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Human brain development involves spatially and temporally heterogeneous changes, detectable across a wide range of magnetic resonance imaging (MRI) measures. Investigating the interplay between multimodal MRI and polygenic scores (PGS) for personality traits associated with mental disorders in youth may provide new knowledge about typical and atypical neurodevelopment. We derived independent components across cortical thickness, cortical surface area, and grey/white matter contrast (GWC) (n?=?2596, 3–23 years), and tested for associations between these components and age, sex and-, in a subsample (n?=?878), PGS for neuroticism. Age was negatively associated with a single-modality component reflecting higher global GWC, and additionally with components capturing common variance between global thickness and GWC, and several multimodal regional patterns. Sex differences were found for components primarily capturing global and regional surface area (boys??girls), but also regional cortical thickness. For PGS for neuroticism, we found weak and bidirectional associations with a component reflecting right prefrontal surface area. These results indicate that multimodal fusion is sensitive to age and sex differences in brain structure in youth, but only weakly to polygenic load for neuroticism.
机译:人脑发育涉及空间和时间异质的变化,可检测到各种磁共振成像(MRI)措施。调查与青年中精神障碍相关的人格特征的多模式MRI和多种子分子分数(PGS)之间的相互作用可能为典型和非典型神经发作提供新的知识。我们跨皮质厚度,皮质表面积和灰色/白质对比(GWC)的独立组件(n?= 2596,3-23岁),并在这些组件和年龄,性别之间进行关联subsample(n?=?878),神经质的pgs。年龄与反映更高全球GWC的单个模态成分的年龄呈负相关,并且另外使用组件捕获全局厚度和GWC之间的常见方差,以及几种多模式区域模式。为主要捕获全球和区域地区(男孩们)(男孩?>女孩)的组件,也发现了性差异,也是区域皮质厚度。对于神经质的PGS,我们发现了与反射右前额相面积的组件的弱和双向关联。这些结果表明,多式联运融合对青年脑结构的年龄和性别差异敏感,但只能弱到神经骚扰的多种子载荷。

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