Title
Tomographic reconstruction of Cerenkov photons in tissues through approximate message-passing
Abstract
Solution with adjustable sparsity to tomographic imaging of Cerenkov photons is presented in this work. The sparsity of radionuclides' distribution in tissues is an objective but unknown fact, and the inverse model of qualitative data is an ill-posed problem. Based on the optimization technique, the uniqueness of numerical solution to the ill-conditioned compact operator can be guaranteed by use of sparse regularization with the approximate message-passing (AMP) method. After absorbing formulations with the AMP, we analyzed the behavior of the hard thresholding operator. Iteratively numerical solutions were used to approximate the real light source by assuming the number of non-zero solution in manual mode. This modified AMP algorithm was performed in numerical simulation and physical experiments with 2-[18F] fluoro-2-deoxy-D-glucose. Experimental results indicated that the proposed method was a kind of low-complexity iterative thresholding algorithms for reconstructing 3D sparse distribution from a small set of optical measurements.
Year
DOI
Venue
2012
10.1117/12.910774
Proceedings of SPIE
Keywords
Field
DocType
Tomography,Luminescence,Hard thresholding operator,Approximate message-passing,F-18-FDG
Tomographic reconstruction,Computer simulation,Optics,Compact operator,Tomography,Regularization (mathematics),Operator (computer programming),Thresholding,Numerical analysis,Physics
Conference
Volume
Issue
ISSN
8314
null
0277-786X
Citations 
PageRank 
References 
0
0.34
1
Authors
6
Name
Order
Citations
PageRank
Jianghong Zhong121.25
Jie Tian21475159.24
Haixiao Liu300.34
Chenghu Qin4217.30
Xin Yang524931.55
Xibo Ma672.70