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Global optimization for 3-D reconstruction of coronary artery trees from angiographic image sequence

机译:血管造影图像序列冠状动脉树三维重建的全局优化

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In this paper, a novel method is developed for the 3-D reconstruction of coronary artery trees from two angiographic images. Due to the rotational distortion and unpredictable motion of the imaging chain, the commonly used pinhole camera model cannot obtain desirable reconstruction of the vascular trees. Curvature Scale Space (CSS) approach is used to find correspondence by choosing two similar views between the various views obtained by the angiographic technique in one cardiac cycle. Therefore, in this study the curve matching and epipolar constraint are integrated to calculate the correspondences in two different angiographic images. Also, a non-linear optimization method is developed for the refinement of the vascular structures and the transformations of the angiographic system using the fundamental matrix and Levenberg-Marquardt (LM) algorithm. The variables available for optimization are verified extensively which ensures achievement of the global minimums and at the same time make corrections in the low order geometric distortions. Experimental result shows that the proposed framework can guarantee high accuracy of reconstruction result.
机译:本文从两个血管造影图像中开发了一种新的方法,用于三维冠状动脉树的三维重建。由于成像链的旋转失真和不可预测的运动,常用的针孔相机模型不能获得血管树的理想重建。曲率尺度空间(CSS)方法用于通过在一个心动周期中选择通过血管造影技术获得的各种视图之间的两个类似的视图来查找对应关系。因此,在该研究中,曲线匹配和ePipolar约束被集成以计算两个不同的血管造影图像中的对应关系。此外,使用基本矩阵和Levenberg-Marquardt(LM)算法开发了用于改进血管结构的非线性优化方法和血管造影系统的变换。可用于优化的变量广泛验证,这确保了全局最小值的实现,同时在低阶几何失真中进行校正。实验结果表明,所提出的框架可以保证重建结果的高精度。

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