DocumentCode :
3471662
Title :
Towards quantitation for dual head coincidence cameras by using attenuation, random and scatter corrections, Fourier rebinning and OSEM
Author :
Shao, Ling ; Nellemann, P. ; Ye, J. ; Koster, J. ; Hines, Horace
Author_Institution :
ADAC Labs. Inc., CA, USA
Volume :
3
fYear :
2000
fDate :
2000
Abstract :
As dual head coincidence cameras start being accepted in clinics, the demand for better image quality and image quantification becomes high. In the investigation, we have applied the latest techniques, including singles-transmission attenuation correction, the Fourier rebinning algorithm and OSEM reconstruction plus scatter and random corrections to images from a dual head coincidence camera towards the goal of quantification. We examined the performance of the camera through the resolution, the target-to-background ratio and the image distortion using several phantoms. The results indicate that attenuation correction improves the image quality significantly, especially for lung and cardiac studies. It not only improves tumor detection but also significantly removes the distortions due to attenuation. Fourier rebinning further improves the image resolution compared to single slice rebinning, especially for an off-center object. OSEM provides a less noisy image than FBP, using comparable processing time. In summary, incorporating the latest correction techniques significantly improves the quality of images obtained from a dual head coincidence camera
Keywords :
Fourier analysis; cameras; cardiology; coincidence techniques; diagnostic radiography; image resolution; lung; medical image processing; positron emission tomography; tumours; Fourier rebinning algorithm; attenuation correction devices; cardiac studies; correction techniques; dual head coincidence cameras; dual head coincidence clinical camera; image distortion; image quality; image quantification; image resolution; lung studies; molecular coincidence detection cameras; noise characterization; off-center object; ordered subsets expectation maximization reconstruction; performance; phantoms; photo-multiplier tube; processing time; random corrections; scatter corrections; scatter response functions; singles-transmission attenuation correction; target-to-background ratio; tumor detection; Attenuation; Cameras; Image quality; Image reconstruction; Image resolution; Imaging phantoms; Lungs; Magnetic heads; Scattering; Tumors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record, 2000 IEEE
Conference_Location :
Lyon
ISSN :
1082-3654
Print_ISBN :
0-7803-6503-8
Type :
conf
DOI :
10.1109/NSSMIC.2000.949217
Filename :
949217
Link To Document :
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