DocumentCode
469785
Title
Analysis of penalized likelihood reconstruction for PET kinetic quantification
Author
Wang, Guobao ; Qi, Jinyi
Author_Institution
Univ. of California, Davis
Volume
5
fYear
2007
fDate
Oct. 26 2007-Nov. 3 2007
Firstpage
3283
Lastpage
3293
Abstract
Quantification of tracer kinetics using dynamic positron emission tomography provides important information for understanding the physiological and biochemical processes in humans and animals. The common procedure is to reconstruct a sequence of dynamic images first, and then apply kinetic analysis to the time activity curve of a region of interest derived from the reconstructed images. Obviously, the choice of image reconstruction method and its parameters affect the accuracy of the time activity curve and hence the estimated kinetic parameters. This paper analyzes the effects of penalized likelihood image reconstruction on tracer kinetic parameter estimation. Approximate theoretical expressions are derived to study the bias, variance, and ensemble mean squares error of the estimated kinetic parameters. Computer simulations show that these formulae predict correctly the changes of these statistics as functions of the regularization parameter. It is found that the choice of the regularization parameter has a significant impact on kinetic parameter estimation, indicating proper selection of image reconstruction parameters is important for dynamic PET. A practical method has also been developed to use the theoretical formulae to guide the selection of the regularization parameter in dynamic PET image reconstruction.
Keywords
image reconstruction; mean square error methods; medical image processing; parameter estimation; positron emission tomography; radioactive tracers; PET kinetic quantification; biochemical processes; dynamic positron emission tomography; image reconstruction; kinetic parameter estimation; mean squares error; penalized likelihood reconstruction; physiological processes; regularization parameter; time activity curve; tracer kinetics; Animals; Computer simulation; Humans; Image analysis; Image reconstruction; Image sequence analysis; Kinetic theory; Mean square error methods; Parameter estimation; Positron emission tomography; Image reconstruction; noise analysis; penalized maximum likelihood; tracer kinetic modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2007. NSS '07. IEEE
Conference_Location
Honolulu, HI
ISSN
1095-7863
Print_ISBN
978-1-4244-0922-8
Electronic_ISBN
1095-7863
Type
conf
DOI
10.1109/NSSMIC.2007.4436838
Filename
4436838
Link To Document