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首页> 外文期刊>SIAM Journal on Scientific Computing >FA-SART: A frequency-adaptive algorithm in pinhole spect tomography
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FA-SART: A frequency-adaptive algorithm in pinhole spect tomography

机译:FA-SART:针孔斑点层析成像中的一种频率自适应算法

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摘要

As a solution to the frequently reported problem of the high frequencies reconstructed sometimes many iterations after the low frequencies in tomography, we proposed in a recent paper [V. Israel-Jost, Ph. Choquet, and A. Constantinesco, Int. J. Biomed. Imaging, 2006, paper 34043.] a general adaptation that can apply to many algorithms: the incomplete backprojection. We stressed the fact that this type of frequency adapted (FA) algorithm works only when the linear problem of tomography to be solved involves deblurring, i.e., when the point spread functions (PSFs) associated with each voxel are large. Thus, depending on the desired level of detail, a parameter is set to achieve the reconstruction within a small number of iterations. The aim of this paper is to give a mathematical analysis of both the acceleration obtained and the convergence of an FA algorithm derived from the simultaneous algebraic reconstruction technique (SART) algorithm of Andersen and Kak, the so-called FA-SART algorithm.
机译:为了解决高频报告的问题,我们在最近的一篇论文中提出了X线断层摄影中低频重建后有时需要多次迭代的问题。以色列·乔斯特(Israel-Jost)博士(Ch.Choquet)和君士坦丁斯科(A. Constantinesco)(美国)。 J.生物医学。影像学,2006年,论文34043。]可以应用于许多算法的一般性修改:不完整的反投影。我们强调了这样一个事实,即仅当要解决的断层扫描的线性问题涉及去模糊时,即与每个体素相关的点扩展函数(PSF)很大时,这种类型的频率自适应(FA)算法才有效。因此,取决于期望的细节水平,设置参数以在少量迭代内实现重建。本文的目的是对从Andersen和Kak的同时代数重构技术(SART)算法(即所谓的FA-SART算法)得出的FA算法的加速度和收敛性进行数学分析。

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