DocumentCode
1070096
Title
Simple charge division readouts for imaging scintillator arrays using a multi-channel PMT
Author
Siegel, Stefan ; Silverman, Robert W. ; Shao, Yiping ; Cherry, Simon R.
Author_Institution
Sch. of Med., California Univ., Los Angeles, CA, USA
Volume
43
Issue
3
fYear
1996
fDate
6/1/1996 12:00:00 AM
Firstpage
1634
Lastpage
1641
Abstract
Three simple charge division circuits were assembled and tested as 2-D position encoding readouts for multi-channel photomultiplier tubes (MC-PMT). They were evaluated with an 8×8 array of individual scintillators (2×2×10 mm BGO) coupled to a 64 channel MC-PMT (Philips XP1722) via 25 cm long, 2 mm diameter, double clad, optical fibers (Kuraray). This type of gamma-ray imaging detector has many potential applications in medical and industrial imaging. Though independent channel readout would allow for the discrimination of scatter within the array, and higher count rates, it would also require an excessive amount of supporting electronics. This is especially true for systems comprised of many MC-PMTs. In this study, the number of channels being read out was reduced from 64 to 4 using three different simple resistor networks. These circuits take advantage of the discretized nature of the scintillator array, the low interchannel crosstalk of the MC-PMT and low input impedance current-sensitive preamplifiers. For each circuit, the scintillator identification accuracy was compared. The identification accuracy as a function of deposited energy was also determined by exposure to various gamma-ray emitters. It was found that the preamplifier circuit noise contributed the most to the degradation of the detector´s spatial response so several low noise op amps were evaluated. It was also determined that keeping the preamplifier input impedance small was necessary for accurate positioning. The coincidence timing resolution of the detector (15 ns) is only slightly degraded by the readout circuit
Keywords
detector circuits; gamma-ray detection; nuclear electronics; photomultipliers; position sensitive particle detectors; preamplifiers; solid scintillation detectors; 15 ns; 2 mm; 2-D position encoding readouts; 25 cm; 64 channel MC-PMT; 8×8 array; BGO; MC-PMT; charge division readouts; count rates; double clad optical fibers; gamma-ray emitters; gamma-ray imaging detector; imaging scintillator arrays; individual scintillators; industrial imaging; interchannel crosstalk; low input impedance current-sensitive preamplifiers; medical imaging; multi-channel PMT; multi-channel photomultiplier tubes; preamplifier input impedance; resistor networks; scintillator identification accuracy; supporting electronics; Assembly; Circuit noise; Circuit testing; Crosstalk; Degradation; Impedance; Optical arrays; Optical imaging; Photomultipliers; Preamplifiers;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.507162
Filename
507162
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