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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >Main effect and interactions of brain regions and gender in the calculation of volumetric asymmetry indices in healthy human brains: Ancova analyses of in vivo 3T MRI data
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Main effect and interactions of brain regions and gender in the calculation of volumetric asymmetry indices in healthy human brains: Ancova analyses of in vivo 3T MRI data

机译:大脑区域和性别在健康人脑中的体积不对称指数计算中的主要作用和相互作用:体内3T MRI数据的Ancova分析

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Introduction: Macroanatomical right-left hemispheric differences in the brain are termed asymmetries, although there is no clear information on the global influence of gender and brain-regions. The aim of this study was to evaluate the main effects and interactions of these variables on the measurement of volumetric asymmetry indices (VAIs). Materials and methods: Forty-seven healthy young-adult volunteers (23 males, 24 females) agreed to undergo brain magnetic resonance imaging in a 3T scanner. Image post processing using voxel-based volumetry allowed the calculation of 54 VAIs from the frontal, temporal, parietal and occipital lobes, limbic system, basal ganglia, and cerebellum for each cerebral hemisphere. Multivariate ANCOVA analysis calculated the main effects and interactions on VAIs of gender and brain regions controlling the effect of age. Results: The only significant finding was the main effect of brain regions (F (6, 9373.605) 44.369, P<.001; partial η2=.101, and power of 1.0), with no significant interaction between gender and brain regions (F (6, 50.517) .239, P=.964). Conclusion: Volumetric asymmetries are present across all brain regions, with larger values found in the limbic system and parietal lobe. The absence of a significant influence of gender and age in the evaluation of the numerous measurements generated by multivariate analyses in this study should not discourage researchers to report and interpret similar results, as this topic still deserves further assessment.
机译:简介:尽管没有关于性别和大脑区域的全球影响的明确信息,但大脑中的宏观解剖学左右半球差异被称为不对称。这项研究的目的是评估这些变量对体积不对称指数(VAI)测量的主要影响和相互作用。材料和方法:47名健康的年轻成人志愿者(23名男性,24名女性)同意在3T扫描仪中进行脑磁共振成像。使用基于体素的容积法进行图像后处理,可以为每个大脑半球从额叶,颞叶,顶叶和枕叶,边缘系统,基底神经节和小脑计算出54个VAI。多元ANCOVA分析计算了性别和控制年龄影响的大脑区域对VAI的主要影响和相互作用。结果:唯一显着发现是大脑区域的主要作用(F(6,9373.605)44.369,P <.001;部分η2= .101,功效为1.0),性别与大脑区域之间无显着相互作用(F (6,50.517).239,P = .964)。结论:在大脑的所有区域都存在体积不对称性,在边缘系统和顶叶中发现较大的值。在本研究中,对由多元分析产生的大量测量结果进行评估时,性别和年龄没有显着影响,不应因此而劝阻研究人员报告和解释相似的结果,因为该主题仍值得进一步评估。

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