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External force back-projective composition and globally deformable optimization for 3-D coronary artery reconstruction

机译:外力反投影组成和3D冠状动脉重建的整体变形优化

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摘要

The clinical value of the 3D reconstruction of a coronary artery is important for the diagnosis and intervention of cardiovascular diseases. This work proposes a method based on a deformable model for reconstructing coronary arteries from two monoplane angiographic images acquired from different angles. First, an external force back-projective composition model is developed to determine the external force, for which the force distributions in different views are back-projected to the 3D space and composited in the same coordinate system based on the perspective projection principle of x-ray imaging. The elasticity and bending forces are composited as an internal force to maintain the smoothness of the deformable curve. Second, the deformable curve evolves rapidly toward the true vascular centerlines in 3D space and angiographic images under the combination of internal and external forces. Third, densely matched correspondence among vessel centerlines is constructed using a curve alignment method. The bundle adjustment method is then utilized for the global optimization of the projection parameters and the 3D structures. The proposed method is validated on phantom data and routine angiographic images with consideration for space and re-projection image errors. Experimental results demonstrate the effectiveness and robustness of the proposed method for the reconstruction of coronary arteries from two monoplane angiographic images. The proposed method can achieve a mean space error of 0.564 mm and a mean re-projection error of 0.349 mm.
机译:冠状动脉3D重建的临床价值对于心血管疾病的诊断和干预非常重要。这项工作提出了一种基于可变形模型的方法,该方法用于从两个从不同角度获取的单平面血管造影图像中重建冠状动脉。首先,建立外力反投影合成模型来确定外力,基于x-透视投影原理,将不同视图中的力分布反投影到3D空间并在同一坐标系中合成射线成像。弹性力和弯曲力作为内力合成,以保持可变形曲线的平滑度。其次,在内部和外部力的共同作用下,可变形曲线在3D空间和血管造影图像中迅速朝着真正的血管中心线发展。第三,使用曲线对准方法构造血管中心线之间的紧密匹配的对应关系。然后,将束调整方法用于投影参数和3D结构的全局优化。考虑到空间和重投影图像误差,该方法在幻像数据和常规血管造影图像上得到了验证。实验结果证明了该方法从两个单平面血管造影图像重建冠状动脉的有效性和鲁棒性。所提出的方法可以实现0.564mm的平均空间误差和0.349mm的平均重投影误差。

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