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Motion Corrected 3D Reconstruction of the Fetal Thorax from Prenatal MRI

机译:动作纠正胎儿MRI胎儿胸腔的三维重建

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In this paper we present a semi-automatic method for analysis of the fetal thorax in genuine three-dimensional volumes. After one initial click we localize the spine and accurately determine the volume of the fetal lung from high resolution volumetric images reconstructed from motion corrupted prenatal Magnetic Resonance Imaging (MRI). We compare the current state-of-the-art method of segmenting the lung in a slice-by-slice manner with the most recent multi-scan reconstruction methods. We use fast rotation invariant spherical harmonics image descriptors with Classification Forest ensemble learning methods to extract the spinal cord and show an efficient way to generate a segmentation prior for the fetal lung from this information for two different MRI field strengths. The spinal cord can be segmented with a DICE coefficient of 0.89 and the automatic lung segmentation has been evaluated with a DICE coefficient of 0.87. We evaluate our method on 29 fetuses with a gestational age (GA) between 20 and 38 weeks and show that our computed segmentations and the manual ground truth correlate well with the recorded values in literature.
机译:在本文中,我们提出了胎儿胸部真正三维体积的分析半自动方法。后一个初始点击我们定位脊柱和准确地确定胎儿肺从高分辨率体积图像的体积从运动重构损坏的产前磁共振成像(MRI)。我们比较与最近的多扫描重建方法分割所述肺切片中的逐片方式的当前状态的最先进的方法。我们使用快速旋转不变的球面谐波与分类森林集成学习方法提取脊髓和显示的有效方式,以产生现有的胎儿肺从该信息对于两个不同的MRI场强度分割的图像描述符。脊髓可以与0.89 DICE系数和自动肺分割被分割为0.87 DICE系数已被评估。我们评估我们对29个胎儿法20和38周,显示之间的胎龄(GA)我们计算的分割,并与文献所记录的数值手动地面实况密切相关。

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