REDUCING STAIRCASING ARTIFACTS IN SPECT RECONSTRUCTION BY AN INFIMAL CONVOLUTION REGULARIZATION

The purpose of this paper is to investigate the ability of the infimal convolution regular- ization in curing the staircasing artifacts of the TV model in the SPECT reconstruction. We formulate the problem of SPECT reconstruction with the infimal convolution regu- larization as a convex three-block...

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Veröffentlicht in:Journal of computational mathematics 2016-11, Vol.34 (6), p.626-647
Hauptverfasser: Wu, Zhifeng, Li, Si, Zeng, Xueying, Xu, Yuesheng, Krol, Andrzej
Format: Artikel
Sprache:eng
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Zusammenfassung:The purpose of this paper is to investigate the ability of the infimal convolution regular- ization in curing the staircasing artifacts of the TV model in the SPECT reconstruction. We formulate the problem of SPECT reconstruction with the infimal convolution regu- larization as a convex three-block optimization problem and characterize its solution by a system of fixed-point equations in terms of the proximity operator of the functions involved in its objective function. We then develop a novel fixed-point proximity algorithm based on the fixed-point equations. Moreover, we introduce a preconditioning matrix motivated by the classical MLEM (maximum-likelihood expectation maximization) algorithm. We prove convergence of the proposed algorithm. The numerical results are included to show that the infimal convolution regularization is capable of effectively reducing the staircasing artifacts, while maintaining comparable image and coefficient recovery contrast. quality in terms of the signal-to-noise ratio
ISSN:0254-9409
1991-7139
DOI:10.4208/jcm.1607-m2016-0537