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Trade-Off Analysis Considering Tomogram Quality and Performance of a Parallel Computing Hardware Realization of Katsevich's Reconstruction Algorithm

机译:考虑层析成像质量和Katsevich重构算法并行计算硬件性能的折衷分析

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In this paper, the trade-off between the target variables tomogram quality and reconstruction time of an implementation of Katsevich's exact reconstruction algorithm for helical cone-beam computed tomography (CT) is analyzed. This is accomplished by means of an OpenCL-based, parallel and portable realization of Katsevich's algorithm. The detailed examination is carried out on a phantom object which is composed of cubes with different attenuation coefficients. For this phantom object, X-ray cone-beam projections are simulated with different helix trajectory parameters. From the simulated projection data sets 3D tomograms are reconstructed. The impacts of the helix parameters on the tomogram quality and the reconstruction time are measured. Moreover, the speedup in dependence of the number of computing units on the OpenCL device is examined. To sum up the results: the tomogram quality increases monotonically with ascending number of projections while keeping the helix pitch fixed. A linear relationship between the overall runtime and the number of projections exists. The trade-off analysis between the tomogram quality and the reconstruction time proves that an optimum is reached if the criteria for the lateral and vertical sampling of the 3D space are fulfilled.
机译:本文分析了Katsevich螺旋锥束计算机断层扫描(CT)精确重建算法的实现在目标变量层析图像质量和重建时间之间的权衡。这是通过基于OpenCL的Katsevich算法的并行和可移植实现来实现的。对由不同衰减系数的立方体组成的体模对象进行详细检查。对于此幻影对象,使用不同的螺旋轨迹参数模拟X射线锥束投影。从模拟的投影数据集重建3D断层图。测量了螺旋参数对断层图像质量和重建时间的影响。此外,还检查了OpenCL设备上取决于计算单元数量的加速。总结一下结果:断层图像质量随着投影数量的增加而单调增加,同时保持螺旋间距不变。总体运行时间与投影数量之间存在线性关系。层析图像质量与重建时间之间的权衡分析证明,如果满足3D空间横向和垂直采样的标准,则可以达到最佳效果。

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