DocumentCode
1239436
Title
Emission Spectral Tomography Reconstruction Based on Maximum Entropy Interpolation
Author
Wan, Xiong ; Yi, Jianglin
Author_Institution
Key Lab. of Nondestructive Test, Nanchang Hangkong Univ., Nanchang
Volume
27
Issue
6
fYear
2009
fDate
3/15/2009 12:00:00 AM
Firstpage
780
Lastpage
785
Abstract
To improve the performance of optical computed tomography (OpCT) reconstruction in the case of limited projection views, maximum entropy (ME) algorithms were proposed and can achieve better results than traditional ones. However, in the discrete iterative process of ME, the variables of the iterative function are continuous. Hence, interpolation methods ought to be used to improve the precision of the iterative function values. Here, a sinc function interpolation approach was adopted in ME algorithm (SINCME) and its reconstruction results for OpCT with limited views were studied using four typical phantoms. Compared results with ME without interpolation, traditional medical CT back-projection algorithm (BP), and iterative algorithm algebraic reconstruction technique (ART) showed that the SINCME algorithm achieved the best reconstruction results. In an experiment of emission spectral tomography reconstruction, SINCME was also adopted to calculate the three-dimensional distribution of physical parameters of a candle flame. The studies of both algorithm and experiment demonstrated that SINCME met the demand of limited-view OpCT reconstruction.
Keywords
biomedical optical imaging; image reconstruction; interpolation; maximum entropy methods; medical image processing; optical tomography; phantoms; SINCME algorithm; emission spectral tomography reconstruction; iterative algorithm algebraic reconstruction; maximum entropy interpolation; medical CT back-projection algorithm; optical computed tomography; phantoms; sinc function interpolation; Biomedical optical imaging; Computed tomography; Entropy; Imaging phantoms; Interpolation; Iterative algorithms; Iterative methods; Optical computing; Stimulated emission; Subspace constraints; Image reconstruction; optical tomography;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2008.927767
Filename
4814822
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