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Longitudinal Analysis of Pre-term Neonatal Brain Ventricle in Ultrasound Images Based on Convex Optimization

机译:基于凸优化的超声图像对早产儿新生儿脑室的纵向分析

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Intraventricular hemorrhage (IVH) is a major cause of brain injury in preterm neonates and leads to dilatation of the ventricles. Measuring ventricular volume quantitatively is an important step in monitoring patients and evaluating treatment options. 3D ultrasound (US) has been developed to monitor ventricle volume as a biomarker for ventricular dilatation and deformation. Ventricle volume as a global indicator, however, does not allow for the precise analysis of local ventricular changes. In this work, we propose a 3D+t spatial-temporal nonlinear registration approach, which is used to analyze the detailed local changes of the ventricles of preterm IVH neonates from 3D US images. In particular, a novel sequential convex/dual optimization is introduced to extract the optimal 3D+t spatial-temporal deformable registration. The experiments with five patients with 4 time-point images for each patient showed that the proposed registration approach accurately and efficiently recovered the longitudinal deformation of the ventricles from 3D US images. To the best of our knowledge, this paper reports the first study on the longitudinal analysis of the ventriclar system of pre-term newborn brains from 3D US images.
机译:脑室内出血(IVH)是早产儿脑损伤的主要原因,并导致心室扩张。定量测量心室容积是监测患者和评估治疗方案的重要步骤。 3D超声(美国)已被开发来监测心室容积,作为心室扩张和变形的生物标记。但是,作为整体指标的心室容积不允许对局部心室变化进行精确分析。在这项工作中,我们提出了一种3D + t时空非线性配准方法,该方法用于从3D US图像分析早产IVH新生儿脑室的详细局部变化。特别是,引入了新颖的顺序凸/对偶优化,以提取最佳3D + t时空可变形配准。对五名患者进行的实验(每位患者具有4个时间点图像)表明,所提出的配准方法可从3D US图像中准确有效地恢复心室的纵向变形。据我们所知,本文报道了从3D US图像对早产新生儿脑室系统进行纵向分析的第一项研究。

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