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Dilatation of Lateral Ventricles with Brain Volumes in Infants with 3D Transfontanelle US

机译:带有3D Transfontanelle US的婴儿的侧脑室扩张与脑容量

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Ultrasound (US) can be used to assess brain development in newborns, as MRI is challenging due to immobilization issues, and may require sedation. Dilatation of the lateral ventricles in the brain is a risk factor for poorer neurodevelopment outcomes in infants. Hence, 3D US has the ability to assess the volume of the lateral ventricles similar to clinically standard MRI, but manual segmentation is time consuming. The objective of this study is to develop an approach quantifying the ratio of lateral ventricular dilatation with respect to total brain volume using 3D US, which can assess the severity of macrocephaly. Automatic segmentation of the lateral ventricles is achieved with a multi-atlas deformable registration approach using locally linear correlation metrics for US-MRI fusion, followed by a refinement step using deformable mesh models. Total brain volume is estimated using a 3D ellipsoid modeling approach. Validation was performed on a cohort of 12 infants, ranging from 2 to 8.5 months old, where 3D US and MRI were used to compare brain volumes and segmented lateral ventricles. Automatically extracted volumes from 3D US show a high correlation and no statistically significant difference when compared to ground truth measurements. Differences in volume ratios was 6.0 ± 4.8% compared to MRI, while lateral ventricular segmentation yielded a mean Dice coefficient of 70.8 ± 3.6% and a mean absolute distance (MAD) of 0.88 ± 0.2 mm, demonstrating the clinical benefit of this tool in paediatric ultrasound.
机译:超声(US)可用于评估新生儿的大脑发育,因为MRI由于固定问题而具有挑战性,并且可能需要镇静剂。大脑侧脑室扩张是婴儿神经发育不良的危险因素。因此,类似于临床标准MRI,3D US具有评估侧脑室体积的能力,但是手动分割非常耗时。这项研究的目的是开发一种使用3D US量化侧脑室扩张相对于总脑容量的比率的方法,该方法可以评估大头畸形的严重性。通过使用US-MRI融合的局部线性相关度量的多图集可变形配准方法,可以实现对侧脑室的自动分割,然后使用可变形网格模型进行细化步骤。使用3D椭球建模方法估算大脑的总体积。在12例2至8.5个月大的婴儿中进行了验证,其中使用3D US和MRI来比较脑容量和分段的侧脑室。与地面真相测量相比,从3D US自动提取的体积显示出很高的相关性,并且在统计学上没有显着差异。与MRI相比,体积比的差异为6.0±4.8%,而侧脑室分割的平均Dice系数为70.8±3.6%,平均绝对距离(MAD)为0.88±0.2 mm,证明了该工具在儿科中的临床益处超声。

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