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Semi-automated visualization of coronary arteries from three-dimensional magnetic resonance images

机译:从三维磁共振图像半自动可视化冠状动脉

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Visualization of coronary arteries from three-dimensional (3D) magnetic resonance (MR) coronary angiography often requires manual delineation of the vessels, a tedious and time consuming task. In this work, a semi-automated technique to rapidly identify the path of one or more coronary arteries throughout a 3D volume is presented. The method applied a nonlinear morphological filter to enhance vessel voxels and suppress myocardial muscle and blood pool. The filtered data and a user-selected ROI were then used to formulate a directed graph, which was subsequently searched to find an optimum path for the vessel through the volume. The coronary vessel was viewed by a curved reformatting and maximum intensity projection (MIP) along the derived path. The algorithm was applied to 3D MR volumes of left and right coronary arteries and successfully produced complete visualizations of the vessels of interest, demonstrating that morphological filtering and optimal path searching were capable of efficiently extracting and viewing coronary vessel paths from large 3D volumes.
机译:从三维(3D)磁共振(MR)冠状动脉血管造影术可视化冠状动脉通常需要手动描绘血管,这是繁琐且耗时的任务。在这项工作中,提出了一种半自动技术,可以快速识别整个3D体积中一条或多条冠状动脉的路径。该方法应用了非线性形态学过滤器来增强血管体素并抑制心肌和血池。然后,使用过滤后的数据和用户选择的ROI来绘制有向图,随后对其进行搜索以找到容器通过体积的最佳路径。通过沿导出路径的弯曲重新格式化和最大强度投影(MIP)观察冠状血管。该算法已应用于左冠状动脉和右冠状动脉的3D MR体积,并成功生成了感兴趣血管的完整可视化图像,表明形态过滤和最佳路径搜索能够从大3D体积中有效提取和查看冠状动脉路径。

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