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Sex-Dependent Age Trajectories of Subcortical Brain Structures: Analysis of Large-Scale Percentile Models and Shape Morphometry

机译:性依赖性脑结构的性爱年龄轨迹:大规模百分位模型分析和形状形态学

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Modeling of structural brain variation over the lifespan is important to better understand factors contributing to healthy aging and risk for neurological conditions such as Alzheimer's disease. Even so. we lack normative data on brain morphometry across the adult lifespan in large, well-powered samples. Here, in a large population-based sample of 26,440 adults from the UK Biobank (age: 44-81 yrs.), we created normative percentile charts for MRI-derived subcortical volumes. Next, we investigated associations between these morphometric measures and the strongest known genetic risk factor for late-onset Alzheimer's disease (APOE genotype) and mapped the spatial distribution of age-by-sex interactions using computational surface mesh modeling and shape analysis. Vertex-wise shape mapping supplements traditional gross volumetric approaches to reveal finer-grained variations across functionally important brain subcompartments. Normative curves revealed volumetric loss with age, as expected, for all subcortical brain structures except for the lateral ventricles, which expanded with age. Surprisingly, no volumetric associations with APOE genotype were detected, despite the very large sample size. Age-related trajectories for volumes differed in women versus men, and surface-based statistical maps revealed the spatial distribution of the age-by-sex interaction. Subcortical volumes declined faster in men than women over the full age range, but after age 60, fewer structures showed sex-dependent trajectories, indicating similar volumetric changes in older men and women. Large-scale statistical modeling of age effects on brain structures may drive new insights into individual differences in brain aging and help to identify factors that promote healthy brain aging and risk for disease.
机译:寿命的结构脑变异的建模对于更好地了解有助于健康老化的因素和诸如阿尔茨海默病等神经病症的风险。即便如此。我们缺乏关于大型良好的样品中成人寿命的脑形态学的规范数据。在这里,在来自英国Biobank的26,440名成年人的基于大量的基于人群的样本中(年龄:44-81年),我们为MRI衍生的皮质标准创建了规范性百分位图表。接下来,我们调查了这些形态测量措施和最严重的已知遗传危险因素的关联,即晚发血疾病(Apoe基因型),并使用计算表面网格建模和形状分析映射了逐次相互作用的空间分布。顶点 - 明智的形状映射补充了传统的总体体积方法,以揭示功能重要的脑子组件上的更精细的变化。规范性曲线随着年龄扩大的侧脑室除了侧脑室外,通常会随着预期的每种皮骨脑结构而揭示体积损失。令人惊讶的是,尽管样品尺寸非常大,但仍没有检测到与ApoE基因型的体积缔合。与男性的女性与年龄相关的轨迹,以及基于地表的统计地图揭示了逐年互动的空间分布。细胞系卷比整个年龄范围内的男性越来越快,但在60岁之后,结构较少,结构依赖性轨迹,表明老年男性和女性的类似体积变化。大规模统计建模对脑结构的年龄影响可能会对脑老化的个体差异推动新的洞察力,并有助于确定促进促进健康脑老化的因素和疾病风险。

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