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Accurate coronary modeling procedure using 2D calibrated projections based on 2D centerline-points on a single projection

机译:使用基于2D中心线点的2D校准投影在单个投影上的准确冠状动脉建模程序

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For the diagnosis of ischemic heart disease, accurate quantitative analysis of the coronary arteries is important. In coronary angiography, a number of projections is acquired from which 3D models of the coronaries can be reconstructed. A significant limitation of the current 3D modeling procedures is the required user interaction for defining the centerlines of the vessel structures in the 2D projections. Currently, the 3D centerliries of the coronary tree structure are calculated based on the interactively determined centerliries in two projections. For every interactively selected centerline point in a first projection the corresponding point in a second projection has to be determined interactively by the user. The correspondence is obtained based on the epipolar-geometry. In this paper a method is proposed to retrieve all the information required for the modeling procedure, by the interactive determination of the 2D centerline-points in only one projection. For every determined 2D centerline-point the corresponding 3D centerline-point is calculated by the analysis of the ID gray value functions of the corresponding epipolarlines in space for all available 2D projections. This information is then used to build a 3D representation of the coronary arteries using coronary modeling techniques. The approach is illustrated on the analysis of calibrated phantom arid calibrated coronary projection data.
机译:对于缺血性心脏病的诊断,准确的冠状动脉的定量分析很重要。在冠状动脉血管造影中,获取多个突起,从中可以重建冠状冠状动脉的3D模型。对电流3D建模程序的显着限制是用于定义2D投影中的血管结构的中心线的所需用户交互。目前,冠状动脉树结构的3D中心基于两个投影中的交互式所确定的中心列来计算。对于第一投影中的每个交互选择的中心线点,第二投影中的对应点必须由用户交互地确定。基于末极 - 几何体获得对应关系。在本文中,提出了一种方法来检索建模过程所需的所有信息,仅通过一个投影中的2D中心线点的交互式确定。对于每个确定的2D中心线 - 点,通过分析所有可用的2D投影的空间中相应的Epipolarlines的ID灰度值函数来计算相应的3D中心线点。然后使用该信息使用冠状动脉建模技术构建冠状动脉的3D表示。该方法是关于校准幻像干旱校准冠状动脉投影数据的分析。

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