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使用投影矩阵的锥形束重投影

Cone-beam reprojection using projection-matrices.

作者信息

Galigekere Ramesh R, Wiesent Karl, Holdsworth David W

机构信息

Imaging Research Laboratories, The John P. Robarts Research Institute, London, ON N6A 5K8, Canada.

出版信息

IEEE Trans Med Imaging. 2003 Oct;22(10):1202-14. doi: 10.1109/TMI.2003.817787.

Abstract

This paper addresses reprojection of three-dimensional (3-D) reconstructions obtained from cone-beam scans using a C-arm imaging equipment assisted by a pose-determining system. The emphasis is on reprojecting without decomposing the estimated projection matrix (P-matrix) associated with a pose. Both voxel- and ray-driven methods are considered. The voxel-driven reprojector follows the algorithm for backprojection using a P-matrix. The ray-driven reprojector is derived by extracting from the P-matrix the equation of the line joining a detector-pixel and the X-ray source position. This reprojector can be modified to a ray-driven backprojector. When the geometry is specified explicitly in terms of the physical parameters of the imaging system, the projection matrices can be constructed. The resulting "projection-matrix method" is advantageous, especially when the scanning trajectory is irregular. The algorithms presented are useful in iterative methods of image reconstruction and enhancement procedures, apart from their well-known role in visualization and volume rendering. Reprojections of 3-D patient data compare favorably with the original X-ray projections obtained from a prototype C-arm system. The algorithms for reprojection can be modified to compute perspective maximum intensity projection.

摘要

本文探讨了在由姿态确定系统辅助的C型臂成像设备进行锥束扫描所获得的三维(3-D)重建的重投影问题。重点在于在不分解与姿态相关的估计投影矩阵(P矩阵)的情况下进行重投影。文中考虑了体素驱动和射线驱动两种方法。体素驱动的重投影器遵循使用P矩阵进行反投影的算法。射线驱动的重投影器是通过从P矩阵中提取连接探测器像素和X射线源位置的直线方程推导出来的。这种重投影器可以修改为射线驱动的反投影器。当根据成像系统的物理参数明确指定几何形状时,就可以构建投影矩阵。由此产生的“投影矩阵法”具有优势,特别是在扫描轨迹不规则的情况下。除了在可视化和体绘制中众所周知的作用外,所提出的算法在图像重建的迭代方法和增强过程中也很有用。三维患者数据的重投影与从原型C型臂系统获得的原始X射线投影相比效果良好。重投影算法可以修改以计算透视最大强度投影。

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