DocumentCode
765697
Title
Reconstruction of SPECT images using generalized matrix inverses
Author
Smith, Mark F. ; Floyd, Carey E., Jr. ; Jaszczak, Ronald J. ; Coleman, R. Edward
Author_Institution
Duke Univ., Durham, NC, USA
Volume
11
Issue
2
fYear
1992
fDate
6/1/1992 12:00:00 AM
Firstpage
165
Lastpage
175
Abstract
Generalized matrix inverses are used to estimate source activity distributions from single photon emission computed tomography (SPECT) projection measurements. Image reconstructions for a numerical simulation and a clinical brain study are examined. The photon flux from the source region and photon detection by the gamma camera are modeled by matrices which are computed by Monte Carlo methods. The singular value decompositions (SVDs) of these matrices give considerable insight into the SPECT image reconstruction problem and the SVDs are used to form approximate generalized matrix inverses. Tradeoffs between resolution and error in estimating source voxel intensities are discussed, and estimates of these errors provide a robust means of stabilizing the solution to the ill-posed inverse problem. In addition to its quantitative clinical applications, the generalized matrix inverse method may be a useful research tool for tasks such as evaluating collimator design and optimizing gamma camera motion
Keywords
computerised tomography; inverse problems; matrix algebra; radioisotope scanning and imaging; Monte Carlo methods; SPECT images reconstruction; clinical brain study; collimator design; gamma camera; generalized matrix inverses; ill-posed inverse problem; medical diagnostic imaging; nuclear medicine; numerical simulation; photon detection; photon flux; singular value decompositions; source voxel intensities; Cameras; Gamma ray detection; Gamma ray detectors; Image reconstruction; Inverse problems; Matrix decomposition; Numerical simulation; Optical computing; Single photon emission computed tomography; Singular value decomposition;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.141640
Filename
141640
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