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基于优化的算法求解具有非线性部分容积效应的离散X射线变换

Optimization-based algorithm for solving the discrete x-ray transform with nonlinear partial volume effect.

作者信息

Chen Buxin, Liu Xin, Zhang Zheng, Xia Dan, Sidky Emil Y, Pan Xiaochuan

机构信息

University of Chicago, Department of Radiology, Chicago, Illinois, United States.

University of Chicago, Department of Radiation and Cellular Oncology, Chicago, Illinois, United States.

出版信息

J Med Imaging (Bellingham). 2020 Sep;7(5):053502. doi: 10.1117/1.JMI.7.5.053502. Epub 2020 Oct 6.

Abstract

: Inverting the discrete x-ray transform (DXT) with the nonlinear partial volume (NLPV) effect, which we refer to as the NLPV DXT, remains of theoretical and practical interest. We propose an optimization-based algorithm for accurately and directly inverting the NLPV DXT. : Formulating the inversion of the NLPV DXT as a nonconvex optimization program, we propose an iterative algorithm, referred to as the nonconvex primal-dual (NCPD) algorithm, to solve the problem. We obtain the NCPD algorithm by modifying a first-order primal-dual algorithm to address the nonconvex optimization. Subsequently, we perform quantitative studies to verify and characterize the NCPD algorithm. : In addition to proposing the NCPD algorithm, we perform numerical studies to verify that the NCPD algorithm can reach the devised numerically necessary convergence conditions and, under the study conditions considered, invert the NLPV DXT by yielding numerically accurate image reconstruction. : We have developed and verified with numerical studies the NCPD algorithm for accurate inversion of the NLPV DXT. The study and results may yield insights into the effective compensation for the NLPV artifacts in CT imaging and into the algorithm development for nonconvex optimization programs in CT and other tomographic imaging technologies.

摘要

对具有非线性部分容积(NLPV)效应的离散X射线变换(DXT)进行反演,即我们所说的NLPV DXT,在理论和实践上仍然具有重要意义。我们提出一种基于优化的算法,用于精确且直接地对NLPV DXT进行反演。将NLPV DXT的反演问题表述为一个非凸优化程序,我们提出一种迭代算法,称为非凸原始对偶(NCPD)算法来解决该问题。我们通过修改一阶原始对偶算法以处理非凸优化问题从而得到NCPD算法。随后,我们进行定量研究以验证和刻画NCPD算法。除了提出NCPD算法,我们还进行数值研究以验证NCPD算法能够达到设计的数值上必要的收敛条件,并且在所考虑的研究条件下,通过产生数值上准确的图像重建来对NLPV DXT进行反演。我们已经开发并通过数值研究验证了用于精确反演NLPV DXT的NCPD算法。该研究及结果可能为CT成像中NLPV伪影的有效补偿以及CT和其他断层成像技术中非凸优化程序的算法开发提供见解。

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