DocumentCode :
1454953
Title :
Fully adaptive temporal regression smoothing in gated cardiac SPECT image reconstruction
Author :
Peter, J. ; Jaszczak, R.J. ; Hutton, B.F. ; Hudson, H.M.
Author_Institution :
Duke Univ. Med. Center, Durham, NC, USA
Volume :
48
Issue :
1
fYear :
2001
fDate :
2/1/2001 12:00:00 AM
Firstpage :
16
Lastpage :
23
Abstract :
A data-driven weighted polynomial regression estimator with variable bandwidth and adaptation of the order of the polynomial can enhance the diagnosis of both ventricular function and myocardial perfusion in gated cardiac SPECT. The authors propose a temporal approach which estimates a mean regression function of either time frame projections or reconstructed images. They investigated several implementations of the regression estimation procedure: (a) prior to the reconstruction, applied on the projection data, (b) iteratively, as a semi-parametric reconstruction method, and (c) applied as a post-reconstruction regression smoother. Implementation of the regression method in step (a) and (c) is independent from the algorithm used to reconstruct the projection data; (b) requires an iterative image reconstruction algorithm. Monte Carlo simulated projection data as well as clinical data have been processed to evaluate the technique. Unique regression smoothing of projection data, (a), or reconstructed images, (c), improves markedly the image statistics while preserving spatial and temporal resolution. Iterative application, (b), without the use of a relaxation parameter may result in over-smoothed time activity curves
Keywords :
Monte Carlo methods; adaptive signal processing; cardiology; image reconstruction; iterative methods; medical image processing; polynomials; single photon emission computed tomography; Monte Carlo simulated projection data; fully adaptive temporal regression smoothing; gated cardiac SPECT image reconstruction; image statistics improvement; medical diagnostic imaging; nuclear medicine; over-smoothed time activity curves; post-reconstruction regression smoother; relaxation parameter; temporal approach; Bandwidth; Image reconstruction; Iterative algorithms; Iterative methods; Monte Carlo methods; Myocardium; Polynomials; Reconstruction algorithms; Smoothing methods; Statistics;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.910826
Filename :
910826
Link To Document :
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