DocumentCode
934676
Title
Maximum entropy image reconstruction in X-ray and diffraction tomography
Author
Mohammad-Djafari, Ali ; Demoment, Guy
Author_Institution
CNRS-ESE-UPS, Gif-sur-Yvette, France
Volume
7
Issue
4
fYear
1988
Firstpage
345
Lastpage
354
Abstract
The authors propose a Bayesian approach with maximum-entropy (ME) priors to reconstruct an object from either the Fourier domain data (the Fourier transform of diffracted field measurements) in the case of diffraction tomography, or directly from the original projection data in the case of X-ray tomography. The objective function obtained is composed of a quadratic term resulting from chi /sup 2/ statistics and an entropy term that is minimized using variational techniques and a conjugate-gradient iterative method. The computational cost and practical implementation of the algorithm are discussed. Some simulated results in X-ray and diffraction tomography are given to compare this method to the classical ones.<>
Keywords
computerised tomography; Bayesian approach; Fourier transform; X-ray tomography; conjugate-gradient iterative method; diffraction tomography; maximum entropy image reconstruction; Bayesian methods; Computational efficiency; Entropy; Fourier transforms; Image reconstruction; Iterative methods; Statistics; X-ray diffraction; X-ray imaging; X-ray tomography;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.14518
Filename
14518
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