Pan Xiaochuan, Xia Dan, Zou Yu, Yu Lifeng
Department of Radiology, The University of Chicago, 5841 S Maryland Avenue, Chicago, IL 60637, USA.
Phys Med Biol. 2004 Sep 21;49(18):4349-69. doi: 10.1088/0031-9155/49/18/011.
A circular scanning trajectory is and will likely remain a popular choice of trajectory in computed tomography (CT) imaging because it is easy to implement and control. Filtered-backprojection (FBP)-based algorithms have been developed previously for approximate and exact reconstruction of the entire image or a region of interest within the image in circular cone-beam and fan-beam cases. Recently, we have developed a 3D FBP-based algorithm for image reconstruction on PI-line segments in a helical cone-beam scan. In this work, we demonstrated that the 3D FBP-based algorithm indeed provided a rather general formulation for image reconstruction from divergent projections (such as cone-beam and fan-beam projections). On the basis of this formulation we derived new approximate or exact algorithms for image reconstruction in circular cone-beam or fan-beam scans, which can be interpreted as special cases of the helical scan. Existing algorithms corresponding to the derived algorithms were identified. We also performed a preliminary numerical study to verify our theoretical results in each of the cases. The results in the work can readily be generalized to other non-circular trajectories.
圆形扫描轨迹在计算机断层扫描(CT)成像中一直是且可能仍将是一种受欢迎的轨迹选择,因为它易于实现和控制。基于滤波反投影(FBP)的算法此前已被开发出来,用于在圆锥束和扇形束情况下对整个图像或图像内的感兴趣区域进行近似和精确重建。最近,我们开发了一种基于3D FBP的算法,用于螺旋圆锥束扫描中PI线段上的图像重建。在这项工作中,我们证明了基于3D FBP的算法确实为从发散投影(如圆锥束和扇形束投影)进行图像重建提供了一种相当通用的公式。基于这个公式,我们推导了用于圆形圆锥束或扇形束扫描中图像重建的新的近似或精确算法,这些算法可以被解释为螺旋扫描的特殊情况。确定了与推导算法相对应的现有算法。我们还进行了初步的数值研究,以验证每种情况下的理论结果。这项工作的结果可以很容易地推广到其他非圆形轨迹。