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Mapping the critical gestational age at birth that alters brain development in preterm-born infants using multi-modal MRI

机译:在出生时映射关键的孕龄,在使用多模态MRI的早产婴儿中改变大脑发育

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Preterm birth adversely affects postnatal brain development. In order to investigate the critical gestational age at birth (GAB) that alters the developmental trajectory of gray and white matter structures in the brain, we investigated diffusion tensor and quantitative T2 mapping data in 43 term-born and 43 preterm-born infants. A novel multivariate linear model the change point model, was applied to detect change points in fractional anisotropy, mean diffusivity, and T2 relaxation time. Change points captured the "critical" GAB value associated with a change in the linear relation between GAB and MRI measures. The analysis was performed in 126 regions across the whole brain using an atlas-based image quantification approach to investigate the spatial pattern of the critical GAB. Our results demonstrate that the critical GABs are region- and modality-specific, generally following a central-to-peripheral and bottom-to-top order of structural development. This study may offer unique insights into the postnatal neurological development associated with differential degrees of preterm birth.
机译:早产会对产后脑发育产生不利影响。为了调查出生时的关键胎龄(GAB),在大脑中改变灰色和白质结构的发育轨迹,我们调查了43个术语和43个早产儿婴儿的扩散张量和定量T2映射数据。一种新型多变量线性模型改变点模型被应用于检测分数各向异性,平均扩散性和T2松弛时间的变化点。更改点捕获与GAB与MRI措施之间的线性关系的变化相关的“关键”GAB值。使用基于地图集的图像量化方法在整个大脑上在126个区域中进行分析,以研究临界GAB的空间模式。我们的结果表明,关键的GAB是区域和模态特异性,通常在结构发育的核心到外围和最重要的顺序之后。本研究可以为与差异血液出生有关的后期神经系统发作提供独特的见解。

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