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Optimization of Transformation for 3D Reconstruction of Coronary Arterial Tree

机译:冠状动脉树三维重建转化的优化

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The spatial relationship between two single plane angiograms, which is characterized by transformation in the forms of a rotation matrix and a translation vector, is important for 3D reconstruction of coronary arterial tree. The error of transformation directly reduces the precision of 3D reconstruction. In this study, we introduce the methods of 3D reconstruction, analyze the necessity of optimization of transformation, and define transformation by quaternion. Then bifurcations, vessel vectors and branch angles are employed to optimize the transformation, with Levenberg-Marquardt algorithm. The experimental results on the human angiogram data are presented. The Standard Deviation of reconstruction error reduces from 3.8573 mm to 1.0803 mm in image A and from 4.0663 mm to 1.0742 mm in image B respectively on clinical angiogram data. The results of experiments show that the technique put forward in this paper greatly improves the accuracy of 3D reconstruction.
机译:两个单个平面血管造影之间的空间关系,其特征在于旋转矩阵的形式和翻译矢量,对于冠状动脉树的三维重建是重要的。转换误差直接降低了3D重建的精度。在这项研究中,我们介绍了3D重建的方法,分析了转化优化的必要性,并通过四元数定义了变换。然后采用分叉,血管向量和分支角度来优化变换,利用Levenberg-Marquardt算法。提出了人血管造影数据的实验结果。重建误差的标准偏差分别在临床血管造影数据上从图像A和4.0663mm到1.0742 mm的图像A和4.0663mm。实验结果表明,本文提出的技术大大提高了3D重建的准确性。

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