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The mathematical equivalence of consistency conditions in the divergent-beam computed tomography

机译:发散计算机体层摄影术中一致性条件的数学等价性

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In this paper, we discuss the mathematical equivalence among four consistency conditions in the divergent-beam computed tomography (CT). The first is the consistency condition derived by Levine et al. by degenerating the John's equation; the second is the integral invariant derived by Wei et al. using the symmetric group theory; the third is the so-called parallel-fan-beam Hilbert projection equality derived by Hamaker et al.; and the fourth is the fan-beam data consistency condition (FDCC) derived by Chen et al. using the complex analysis theory. Historically, most of these consistency conditions were derived by their corresponding authors using complicated mathematical strategies, which are usually not easy to be precisely understood by researchers with only a general engineering mathematical background. In this paper, we symmetrically re-derive all these consistency conditions using a friendly mathematical language. Based on theoretical derivation, it has been found that all these consistency conditions can be viewed as a necessary condition for the specific solution to John's equation. From the physical point of view, all these consistency conditions have been essentially expressed as a similar constraint on the projection data acquired with arbitrary two X-ray source points. Numerical simulations have been carried out to experimentally evaluate and verify their merits.
机译:在本文中,我们讨论了发散束计算机体层摄影术(CT)中四个一致性条件之间的数学等价性。第一个是Levine等人得出的一致性条件。通过退化约翰方程;第二个是魏等人推导的积分不变式。使用对称群理论;第三个是Hamaker等人推导的所谓的平行扇束希尔伯特投影等式。第四个是Chen等人导出的扇形束数据一致性条件(FDCC)。使用复杂分析理论。从历史上看,大多数一致性条件是由其相应的作者使用复杂的数学策略得出的,通常只有具有一般工程数学背景的研究人员通常不容易准确地理解这些一致性条件。在本文中,我们使用友好的数学语言对称地重新推导所有这些一致性条件。根据理论推导,已经发现所有这些一致性条件都可以看作是约翰方程特定解的必要条件。从物理角度来看,所有这些一致性条件已基本上表示为对使用任意两个X射线源点获取的投影数据的类似约束。进行了数值模拟,以通过实验评估和验证它们的优点。

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