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NEOCIVET: Towards accurate morphometry of neonatal gyrification and clinical applications in preterm newborns

机译:NEOCIVET:寻求准确的新生儿回旋形态学分析及早产儿的临床应用

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摘要

Cerebral cortical folding becomes dramatically more complex in the fetal brain during the 3rd trimester of gestation; the process continues in a similar fashion in children who are born prematurely. To quantify this morphological development, it is necessary to extract the interface between gray matter and white matter, which is particularly challenging due to changing tissue contrast during brain maturation. We employed the well-established CIVET pipeline to extract this cortical surface, with point correspondence across subjects, using a surface-based spherical registration. We then developed a variant of the pipeline, called NEOCIVET, that quantified cortical folding using mean curvature and sulcal depth while addressing the well-known problems of poor and temporally-varying gray/white contrast as well as motion artifact in neonatal MRI. NEOCIVET includes: i) a tissue classification technique that analyzed multi-atlas texture patches using the nonlocal mean estimator and subsequently applied a label fusion approach based on a joint probability between templates, ii) neonatal template construction based on age-specific sub-groups, and iii) masking of non-interesting structures using label-fusion approaches. These techniques replaced modules that might be suboptimal for regional analysis of poor-contrast neonatal cortex. The proposed segmentation method showed more accurate results in subjects with various ages and with various degrees of motion compared to state-of-the-art methods. In the analysis of 158 preterm-born neonates, many with multiple scans (n = 231; 26–40 weeks postmenstrual age at scan), NEOCIVET identified increases in cortical folding over time in numerous cortical regions (mean curvature:+0.003/week; sulcal depth:+0.04 mm/week) while folding did not change in major sulci that are known to develop early (corrected p < 0.05). The proposed pipeline successfully mapped cortical structural development, supporting current models of cerebral morphogenesis, and furthermore, revealed impairment of cortical folding in extremely preterm newborns relative to relatively late preterm newborns, demonstrating its potential to provide biomarkers of prematurity-related developmental outcome.
机译:在妊娠的第三个三个月中,胎儿大脑中大脑皮层的折叠变得非常复杂。对于早产儿,这一过程以类似的方式继续进行。为了量化这种形态学发展,有必要提取灰质和白质之间的界面,由于大脑成熟过程中组织对比度的变化,这尤其具有挑战性。我们使用完善的CIVET管道,使用基于表面的球面配准,提取此皮质表面,并在各个受试者之间建立点对应关系。然后,我们开发了一种名为NEOCIVET的管道变体,它使用平均曲率和沟深来量化皮层折叠,同时解决了新生儿MRI中众所周知的灰度/白度对比度随时间变化和时差以及运动伪影的问题。 NEOCIVET包括:i)一种组织分类技术,该技术使用非局部均值估计器分析了多图集纹理斑块,然后基于模板之间的联合概率应用了标签融合方法; ii)基于特定年龄子组的新生儿模板构建, iii)使用标签融合方法掩盖不感兴趣的结构。这些技术替代了可能差的新生儿皮层区域分析的模块。与最新方法相比,所提出的分割方法在不同年龄和不同运动程度的受试者中显示出更准确的结果。在对158例早产新生儿进行分析时,其中许多人进行了多次扫描(n = 231;月经后年龄为26–40周),NEOCIVET确认了随着时间的推移,许多皮质区域的皮质折叠增加(平均曲率:+ 0.003 /周;平均曲率:+ 0.003 /周)。沟深度:+0.04毫米/周),而折叠未在早期发展的主要沟中改变(校正后的p <0.05)。拟议中的管道成功地绘制了皮质结构发育图,支持了当前的脑形态发生模型,并且还揭示了相对于较早的早产儿,极早产儿的皮质折叠受到损害,表明其潜力可提供与早产有关的发育结果的生物标志物。

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