Title :
Design studies of a high resolution PET detector using APD arrays
Author :
Shao, Y. ; Silverman, R.W. ; Farrell, R. ; Cirignano, L. ; Grazioso, R. ; Shah, K.S. ; Vissel, G. ; Clajus, M. ; Tüme, T.O. ; Cherry, S.R.
Author_Institution :
Dept. of Molecular & Med. Pharmacology, California Univ. Sch. of Med., Los Angeles, CA, USA
fDate :
6/1/2000 12:00:00 AM
Abstract :
The authors evaluated a compact, high resolution PET detector module using avalanche photodiode (APD) arrays to replace bulky position sensitive PMTs. The newly developed APD array is a planar processed 4×4 array which has a 2×2 mm2 pixel size with 0.4 mm gaps between pixels, about 60% quantum efficiency at 420 nm wavelength, and uniform high gain (>1000) across all channels. A 4×4 array of 2×2×10 mm3 LSO crystals was coupled to an APD array. Different readout electronics and signal multiplexing schemes were explored. All crystals in the detector array were clearly identified in the flood source histogram, with average peak-to-valley ratios of about 12:1 using a charge sharing resistor network. The energy resolution was measured to be ~14% at 511 keV in the detector array. The measured timing resolution was 2.6 ns in coincidence with a LSO/PMT detector. By optimizing the readout electronics currently being used, it is likely that detector performance can be further improved. The authors have also determined depth-of-interaction (DOI) by reading out two APD arrays connected to the ends of a 2×2×22 mm3 LSO crystal. Preliminary measurements show good DOI measurement capability with DOI positioning uncertainty between 4 and 6.5 mm
Keywords :
avalanche photodiodes; biomedical electronics; gamma-ray detection; image resolution; positron emission tomography; readout electronics; 0.4 mm; 2.6 ns; 420 nm; 511 keV; LSO crystals; PET detector readout electronics; avalanche photodiode arrays; bulky position sensitive PMTs; charge sharing resistor network; compact high resolution PET detector module; energy resolution; flood source histogram; medical diagnostic imaging; nuclear medicine; pixel size; positioning uncertainty; quantum efficiency; signal multiplexing schemes; Avalanche photodiodes; Crystals; Energy resolution; Histograms; Position measurement; Position sensitive particle detectors; Positron emission tomography; Readout electronics; Resistors; Sensor arrays;
Journal_Title :
Nuclear Science, IEEE Transactions on