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基于平板探测器的采用圆加双弧数据采集轨道的锥束计算机断层扫描:初步体模研究

Flat panel detector-based cone beam computed tomography with a circle-plus-two-arcs data acquisition orbit: preliminary phantom study.

作者信息

Ning Ruola, Tang Xiangyang, Conover David, Yu Rongfeng

机构信息

Department of Radiology, University of Rochester, Rochester, New York 14642, USA.

出版信息

Med Phys. 2003 Jul;30(7):1694-705. doi: 10.1118/1.1582470.

Abstract

Cone beam computed tomography (CBCT) has been investigated in the past two decades due to its potential advantages over a fan beam CT. These advantages include (a) great improvement in data acquisition efficiency, spatial resolution, and spatial resolution uniformity, (b) substantially better utilization of x-ray photons generated by the x-ray tube compared to a fan beam CT, and (c) significant advancement in clinical three-dimensional (3D) CT applications. However, most studies of CBCT in the past are focused on cone beam data acquisition theories and reconstruction algorithms. The recent development of x-ray flat panel detectors (FPD) has made CBCT imaging feasible and practical. This paper reports a newly built flat panel detector-based CBCT prototype scanner and presents the results of the preliminary evaluation of the prototype through a phantom study. The prototype consisted of an x-ray tube, a flat panel detector, a GE 8800 CT gantry, a patient table and a computer system. The prototype was constructed by modifying a GE 8800 CT gantry such that both a single-circle cone beam acquisition orbit and a circle-plus-two-arcs orbit can be achieved. With a circle-plus-two-arcs orbit, a complete set of cone beam projection data can be obtained, consisting of a set of circle projections and a set of arc projections. Using the prototype scanner, the set of circle projections were acquired by rotating the x-ray tube and the FPD together on the gantry, and the set of arc projections were obtained by tilting the gantry while the x-ray tube and detector were at the 12 and 6 o'clock positions, respectively. A filtered backprojection exact cone beam reconstruction algorithm based on a circle-plus-two-arcs orbit was used for cone beam reconstruction from both the circle and arc projections. The system was first characterized in terms of the linearity and dynamic range of the detector. Then the uniformity, spatial resolution and low contrast resolution were assessed using different phantoms mainly in the central plane of the cone beam reconstruction. Finally, the reconstruction accuracy of using the circle-plus-two-arcs orbit and its related filtered backprojection cone beam volume CT reconstruction algorithm was evaluated with a specially designed disk phantom. The results obtained using the new cone beam acquisition orbit and the related reconstruction algorithm were compared to those obtained using a single-circle cone beam geometry and Feldkamp's algorithm in terms of reconstruction accuracy. The results of the study demonstrate that the circle-plus-two-arcs cone beam orbit is achievable in practice. Also, the reconstruction accuracy of cone beam reconstruction is significantly improved with the circle-plus-two-arcs orbit and its related exact CB-FPB algorithm, as compared to using a single circle cone beam orbit and Feldkamp's algorithm.

摘要

在过去二十年中,锥束计算机断层扫描(CBCT)因其相对于扇束CT的潜在优势而受到研究。这些优势包括:(a)数据采集效率、空间分辨率和空间分辨率均匀性有了很大提高;(b)与扇束CT相比,X射线管产生的X射线光子的利用率显著提高;(c)临床三维(3D)CT应用有了重大进展。然而,过去大多数关于CBCT的研究都集中在锥束数据采集理论和重建算法上。X射线平板探测器(FPD)的最新发展使CBCT成像变得可行和实用。本文报道了一种新构建的基于平板探测器的CBCT原型扫描仪,并通过模体研究展示了该原型的初步评估结果。该原型由一个X射线管、一个平板探测器、一台GE 8800 CT机架、一张检查床和一个计算机系统组成。该原型是通过对GE 8800 CT机架进行改造构建而成的,这样既可以实现单圈锥束采集轨道,也可以实现圆加双弧轨道。采用圆加双弧轨道时,可以获得一整套锥束投影数据,包括一组圆形投影和一组弧形投影。使用该原型扫描仪,通过在机架上一起旋转X射线管和平板探测器来采集圆形投影集,通过在X射线管和探测器分别位于12点和6点位置时倾斜机架来获得弧形投影集。基于圆加双弧轨道的滤波反投影精确锥束重建算法用于从圆形和弧形投影进行锥束重建。首先根据探测器的线性度和动态范围对系统进行表征。然后使用不同的模体主要在锥束重建的中心平面评估均匀性、空间分辨率和低对比度分辨率。最后,使用专门设计的圆盘模体评估使用圆加双弧轨道及其相关的滤波反投影锥束容积CT重建算法的重建精度。将使用新的锥束采集轨道和相关重建算法获得的结果与使用单圈锥束几何结构和费尔德坎普算法获得的结果在重建精度方面进行了比较。研究结果表明,圆加双弧锥束轨道在实际中是可行的。此外,与使用单圈锥束轨道和费尔德坎普算法相比,圆加双弧轨道及其相关的精确CB - FPB算法显著提高了锥束重建的精度。

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