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New presentation method for magnetic resonance angiography images based on skeletonization

机译:基于骨架化的磁共振血管造影图像的新表示方法

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Abstract: Magnetic resonance angiography (MRA) images are usually presented as maximum intensity projections (MIP), and the choice of viewing direction is then critical for the detection of stenoses. We propose a presentation method that uses skeletonization and distance transformations, which visualizes variations in vessel width independent of viewing direction. In the skeletonization, the object is reduced to a surface skeleton and further to a curve skeleton. The skeletal voxels are labeled with their distance to the original background. For the curve skeleton, the distance values correspond to the minimum radius of the object at that point, i.e., half the minimum diameter of the blood vessel at that level. The following image processing steps are performed: resampling to cubic voxels, segmentation of the blood vessels, skeletonization ,and reverse distance transformation on the curve skeleton. The reconstructed vessels may be visualized with any projection method. Preliminary results are shown. They indicate that locations of possible stenoses may be identified by presenting the vessels as a structure with the minimum radius at each point. !18
机译:摘要:磁共振血管造影(MRA)图像通常以最大强度投影(MIP)的形式呈现,因此查看方向的选择对于狭窄的检测至关重要。我们提出了一种使用骨架化和距离变换的表示方法,该方法可视化了独立于观察方向的血管宽度的变化。在骨架化中,将对象还原为表面骨架,再还原为曲线骨架。骨骼素标有它们到原始背景的距离。对于曲线骨架,距离值对应于对象在该点的最小半径,即该水平处的血管的最小直径的一半。执行以下图像处理步骤:重新采样到立体体素,分割血管,骨架化以及在曲线骨架上进行反向距离变换。重建的血管可用任何投影方法可视化。显示了初步结果。它们表明,可以通过将血管呈现为在每个点具有最小半径的结构来识别可能的狭窄部位。 !18

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