DocumentCode :
451756
Title :
Optimal energy window selection for scintigraphy and emission computed tomography
Author :
Wells, Kevin ; Tumian, Afidalina ; Zapros, Angelos ; Alnafea, Mohammed ; Saripan, M. Iqbal ; Guy, Matthew ; Hinton, Paul
Author_Institution :
Sch. of Electron. & Phys. Sci., Surrey Univ., Guildford
Volume :
4
fYear :
2005
fDate :
23-29 Oct. 2005
Firstpage :
2049
Lastpage :
2053
Abstract :
Radioisotope imaging methods such as PET, SPECT and planar scintigraphy, currently utilize a fixed energy (pulse height) acceptance window regardless of the volume of the subject being imaged. This is despite previous work suggesting that higher window settings may yield improved image quality for imaging larger objects. However, we speculate that non-standard energy windows have not been widely adopted because there has not, until now, been a method available for determining how and when to use such an approach. In this new work we address this issue and propose a method for setting an adaptive photopeak acceptance window. This should be optimal for a wide variety of imaging situations applied across different radioisotope imaging methods. In order to develop an automatic technique in which individual patient-specific optimal thresholds can be determined, we propose a Bayes´ minimum error thresholding approach, which utilizes modeling the upper part of the observed energy spectrum as a two-class Gaussian mixture model. Exemplar planar Monte Carlo results and a preliminary phantom study are presented
Keywords :
Bayes methods; Gaussian processes; Monte Carlo methods; medical image processing; positron emission tomography; single photon emission computed tomography; Bayes minimum error thresholding approach; Monte Carlo methods; PET; SPECT; adaptive photopeak acceptance window; emission computed tomography; energy spectrum; fixed energy acceptance window; image quality; individual patient-specific optimal thresholds; nonstandard energy windows; optimal energy window selection; phantom; planar scintigraphy; radioisotope imaging; two-class Gaussian mixture model; Cameras; Computed tomography; Electromagnetic scattering; Image quality; Imaging phantoms; Monte Carlo methods; Optical imaging; Particle scattering; Positron emission tomography; Radioactive materials;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record, 2005 IEEE
Conference_Location :
Fajardo
ISSN :
1095-7863
Print_ISBN :
0-7803-9221-3
Type :
conf
DOI :
10.1109/NSSMIC.2005.1596736
Filename :
1596736
Link To Document :
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