DocumentCode :
3532324
Title :
Uniformity correction using non-uniform floods
Author :
Jansen, Floris P. ; Tsukerman, Leonid ; Volokh, Lana ; Blevis, Ira ; Hugg, James W. ; Bouhnik, Jean-Paul
Author_Institution :
GE Global Res., Niskayuna, NY, USA
fYear :
2010
fDate :
Oct. 30 2010-Nov. 6 2010
Firstpage :
2314
Lastpage :
2318
Abstract :
Calibration and quality control (QC) of gamma cameras with fixed pinhole collimators presents unique challenges since the usual assumption of uniform flood intensity at the surface of the detector is violated. For the GE Discovery NM 530c*, a fast cardiac SPECT system with multiple pinholes and CZT detectors focused on the heart, the problem is further complicated by the fact that the plane of the pinhole may not be parallel to either the detector or the flood source. To address this, we derived an expression for the geometrical response to an ideal uniform flood source, then added further terms to approximate the attenuation and scatter behavior of a real flood source. The model was validated with Monte Carlo simulations for a range of angles for both flood and pinhole. Accurate knowledge of the flood source orientation is essential for good uniformity correction; we developed a jig that permits repeatable flood positioning for rapid daily QC. Alternatively we have shown that the angle of the flood can be calculated from observed systematic flood non-uniformity. Experimental measurements show that variations in pinhole penetration as a function of angle can be detected in the residual error of the floods; the magnitude of the effect agrees very well with predictions from a simple model of the knife edge collimator. Uniformity effects attributable to the finite stopping power of CZT were also observed. The methods described in this paper have been implemented in the GE Discovery NM 530c and Discovery NM/CT 570c imaging systems, and portions of the technology are patent pending.
Keywords :
Monte Carlo methods; calibration; cardiology; medical image processing; physiological models; quality control; single photon emission computed tomography; CZT detectors; GE Discovery NM 530c; GE Discovery NM/CT 570c imaging; Monte Carlo simulations; attenuation behavior; calibration; fast cardiac SPECT system; fixed pinhole collimators; flood source orientation; gamma cameras; heart; nonuniform floods; pinhole penetration; quality control; scatter behavior; uniformity correction; Attenuation; Detectors; Floods; Mathematical model; Medical services; Phantoms; Sensitivity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record (NSS/MIC), 2010 IEEE
Conference_Location :
Knoxville, TN
ISSN :
1095-7863
Print_ISBN :
978-1-4244-9106-3
Type :
conf
DOI :
10.1109/NSSMIC.2010.5874197
Filename :
5874197
Link To Document :
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