DocumentCode :
884252
Title :
3-D Monte Carlo-based scatter compensation in quantitative I-131 SPECT reconstruction
Author :
Dewaraja, Yuni K. ; Ljungberg, Michael ; Fessler, Jeffrey A.
Author_Institution :
Dept. of Radiol., Univ. of Michigan, Ann Arbor, MI, USA
Volume :
53
Issue :
1
fYear :
2006
Firstpage :
181
Lastpage :
188
Abstract :
We have implemented highly accurate Monte Carlo based scatter modeling (MCS) with 3-D ordered subsets expectation maximization (OSEM) reconstruction for I-131 single photon emission computed tomography (SPECT). The scatter is included in the statistical model as an additive term and attenuation and detector response are included in the forward/backprojector. In the present implementation of MCS, a simple multiple window-based estimate is used for the initial iterations and in the later iterations the Monte Carlo estimate is used for several iterations before it is updated. For I-131, MCS was evaluated and compared with triple energy window (TEW) scatter compensation using simulation studies of a mathematical phantom and a clinically realistic voxel-phantom. Even after just two Monte Carlo updates, excellent agreement was found between the MCS estimate and the true scatter distribution. Accuracy and noise of the reconstructed images were superior with MCS compared to TEW. However, the improvement was not large, and in some cases may not justify the large computational requirements of MCS. Furthermore, it was shown that the TEW correction could be improved for most of the targets investigated here by applying a suitably chosen scaling factor to the scatter estimate. Finally clinical application of MCS was demonstrated by applying the method to an I-131 radioimmunotherapy (RIT) patient study.
Keywords :
Monte Carlo methods; image reconstruction; iterative methods; phantoms; radiation therapy; single photon emission computed tomography; 3-D Monte Carlo-based scatter compensation; 3-D ordered subsets expectation maximization; OSEM; TEW correction; attenuation response; clinically realistic voxel-phantom; detector response; forward/backprojector; image reconstruction; iterations; mathematical phantom; multiple window-based estimate; quantitative I-131 SPECT reconstruction; radioimmunotherapy patient; scaling factor; scatter correction; simulation studies; single photon emission computed tomography; statistical model; triple energy window scatter compensation; Attenuation; Detectors; Electromagnetic scattering; Helium; Image quality; Image reconstruction; Imaging phantoms; Monte Carlo methods; Particle scattering; Single photon emission computed tomography; I-131 SPECT; Monte Carlo; SPECT quantification; image reconstruction; scatter correction;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2005.862956
Filename :
1610970
Link To Document :
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