DocumentCode
1844661
Title
Improving the count rate performance of a modular cylindrical SPECT system
Author
Li, Y.-J. ; Hollinger, E.F. ; Liu, J. ; Chang, W.
Author_Institution
Dept. of Diagnostic Radiol. & Nucl. Med., Rush-Presbyterian-St. Lukes Med. Center, Chicago, IL, USA
Volume
2
fYear
1996
fDate
2-9 Nov 1996
Firstpage
1392
Abstract
We recently proposed a design of a modular cylindrical cardiac SPECT system. One special feature of this system is an integrated provision for transmission imaging. To meet the clinical demands of obtaining transmission images, this system must be able to achieve a very high count rate (CR). To explore methods for achieving a high CR capability on a modular cylindrical detector system, we have used our existing modular cylindrical brain SPECT system to examine the feasibility of two approaches. First, we use digital-signal-processing (DSP) boards, in parallel, to execute real time position calculations. Second, we use local encoding and triggering circuits to perform analog signal processing, including identifying the detector module and digitizing the pulse signals. The results of our preliminary investigations indicate that applying the multiple-DSP parallel position calculation and local triggering techniques in a modular SPECT system can improve the CR capability significantly. Applying local triggering increased the CR capability by 15% at a CR capability of 200 kcps. Because we have used slow-speed DSP boards during this proof-of-concept testing, we have not yet met the CR requirements for transmission imaging. However, these results indicate that by using state-of-the-art DSP boards the CR capability of this modular SPECT system can be increased to over 300 kcps
Keywords
digital signal processing chips; medical image processing; single photon emission computed tomography; analog signal processing; count rate performance; digital-signal-processing; local encoding; modular cylindrical SPECT system; modular cylindrical brain SPECT system; modular cylindrical cardiac SPECT system; multiple-DSP parallel position calculation; pulse signals; real time position calculations; transmission imaging; triggering circuits; Biomedical imaging; Chromium; Circuit testing; Detectors; Digital signal processing; Encoding; High-resolution imaging; Nuclear medicine; Radiology; Signal processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium, 1996. Conference Record., 1996 IEEE
Conference_Location
Anaheim, CA
ISSN
1082-3654
Print_ISBN
0-7803-3534-1
Type
conf
DOI
10.1109/NSSMIC.1996.591708
Filename
591708
Link To Document