DocumentCode :
86241
Title :
A Prototype Compton Camera Array for Localization and Identification of Remote Radiation Sources
Author :
Kong, Y. ; Brands, H. ; Glaser, T. ; Herbach, C. ; Hoy, L. ; Kreuels, M. ; Kuster, Markus ; Pausch, G. ; Petzoldt, J. ; Plettner, C. ; Preston, J. ; Roemer, K. ; Scherwinski, Falko ; Teofilov, N. ; Verity, J. ; Wolf, Alon ; Lentering, Ralf ; Stein, John
Author_Institution :
FLIR Radiat. GmbH, Solingen, Germany
Volume :
60
Issue :
2
fYear :
2013
fDate :
Apr-13
Firstpage :
1066
Lastpage :
1071
Abstract :
A functional prototype two-plane Compton camera array for localization and identification of remote radiation sources, consisting of four PVT and four NaI(Tl) scintillation detectors with PMT readout, is presented. The large-volume, 76 × 76 ×76 mm scintillators provide a broad field of view for scattered photons and facilitate maximum efficiency at moderate cost. Each detector is equipped with a voxelSPEC, a compact electronic module that provides high voltage for the PMT, signal processing, detector stabilization, and an Ethernet communication interface. The voxelSPEC delivers list-mode event data with nanosecond precision timing over non-proprietary Ethernet and makes a system extension very easy. A software package has been developed for real-time data processing and image reconstruction. Advantages in the hard- and software allow stable, unattended operation of the camera array for many days, and provide easy-to-read information on the radiation source in real time. Measurements with the prototype array have been performed for a few standard scenarios and geometries to verify the model predications obtained by Monte-Carlo simulations. Simulations have been further performed to explore larger camera arrays with 2 × 4 × 4, 2 × 8 × 8, 2 × 10 × 10, 2 × 13 × 13 and 2 × 16 × 16 detectors.
Keywords :
Compton effect; Monte Carlo methods; cameras; computerised instrumentation; gamma-ray detection; geometry; high energy physics instrumentation computing; image reconstruction; local area networks; prototypes; readout electronics; signal processing; solid scintillation detectors; Ethernet communication interface; Monte-Carlo simulations; NaI(Tl) scintillation detector; PMT readout; PVT scintillation detector; compact electronic module; detector stabilization; easy-to-read information; functional prototype two-plane Compton camera array; hardware advantage; high voltage PMT; image reconstruction; large-volume scintillators; list-mode event data; maximum efficiency facilitation; model predication verification; moderate cost; nanosecond precision timing; nonproprietary Ethernet; prototype array measurements; real time radiation source; real-time data processing; remote radiation source identification; remote radiation source localization; scattered photons; signal processing; software advantage; software package; stable operation; standard geometries; standard scenarios; system extension; unattended operation; voxelSPEC; Absorption; Arrays; Cameras; Detectors; Energy measurement; Prototypes; Scattering; Compton camera; nuclide identification; radiation detection; source imaging;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2012.2222665
Filename :
6375782
Link To Document :
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