DocumentCode :
2621973
Title :
Real time digital signal processing implementation for an APD-based PET scanner with phoswich detectors
Author :
Fontaine, R. ; Tétrault, M. -A ; Bélanger, F. ; Viscogliosi, N. ; Himmich, R. ; Michaud, J.-B. ; Robert, S. ; Leroux, J.-D. ; Semmaoui, H. ; Bérard, P. ; Cadorette, J. ; Pepin, C.M. ; Lecomte, R.
Author_Institution :
Dept. of Electr. Eng. & Comput. Eng., Univ. de Sherbrooke, Que.
fYear :
2005
fDate :
10-10 June 2005
Abstract :
Recent progress in advanced digital signal processing provides an opportunity to expand the computation power required for real time extraction of event characteristics in APD-based positron emission tomography (PET) scanners. These developments are made possible by a highly parallel data acquisition (DAQ) system based on an integrated analog front-end and a high-speed fully digital signal processing section that directly samples the output of each preamplifier with a free-running, off-the-shelf, 45-MHz MAX1193 analog-to-digital converter that feeds the sampled data into a field programmable gate array VirtexII PRO from Xilinx. This FPGA features ~31,000 logic cells and 2 PowerPC processors, which allows up to 64 channels to be processed simultaneously. Each channel has its own digital signal processing chain including a trigger, a baseline restorer and a timestamp algorithm. Various timestamp algorithms have been tested so far, achieving a coincidence timing resolution of 3.2 ns FWHM for APD-LSO and 11.4 ns FWHM for APD-BGO detectors, respectively. Channels are then multiplexed into a TMS320C6414 DSP processor from Texas Instruments for crystal identification by an ARMAX recursive algorithm borrowed from identification and vector quantization theory. The system can sustain an event rate of 10 000 events/s/channel without electronic dead time
Keywords :
avalanche photodiodes; biomedical imaging; data acquisition; digital signal processing chips; field programmable gate arrays; high energy physics instrumentation computing; positron emission tomography; real-time systems; solid scintillation detectors; APD; APD-BGO detectors; APD-LSO detectors; ARMAX recursive algorithm; FWHM; PET scanner; TMS320C6414 DSP processor; VirtexII PRO; Xilinx; analog-to-digital converter; avalanche photodiodes; baseline restorer; coincidence timing resolution; crystal identification; data acquisition system; field programmable gate array; integrated analog front-end; phoswich detectors; real time digital signal processing; timestamp algorithm; vector quantization theory; Analog-digital conversion; Data acquisition; Data mining; Detectors; Digital signal processing; Feeds; Field programmable gate arrays; Positron emission tomography; Preamplifiers; Signal processing algorithms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real Time Conference, 2005. 14th IEEE-NPSS
Conference_Location :
Stockholm
Print_ISBN :
0-7803-9183-7
Type :
conf
DOI :
10.1109/RTC.2005.1547421
Filename :
1547421
Link To Document :
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