DocumentCode :
792147
Title :
Development of a Monte Carlo Simulation for APD-Based PET Detectors Using a Continuous Scintillating Crystal
Author :
Clowes, Peter ; McCallum, Stephen ; Welch, Andy
Author_Institution :
Dept. of Biomed. Phys. & Bioeng., Univ. of Aberdeen
Volume :
53
Issue :
5
fYear :
2006
Firstpage :
2563
Lastpage :
2569
Abstract :
We are currently developing a multilayer avalanche photodiode (APD)-based detector for use in positron emission tomography (PET), which utilizes thin continuous crystals. In this paper, we developed a Monte Carlo-based simulation to aid in the design of such detectors. We measured the performance of a detector comprising a single thin continuous crystal (3.1 mm times 9.5 mm times 9.5 mm) of lutetium yttrium ortho-silicate (LYSO) and an APD array (4times4) elements; each element 1.6 mm2 and on a 2.3 mm pitch. We showed that a spatial resolution of better than 2.12 mm is achievable throughout the crystal provided that we adopt a Statistics Based Positioning (SBP) Algorithm. We then used Monte Carlo simulation to model the behavior of the detector. The accuracy of the Monte Carlo simulation was verified by comparing measured and simulated parent datasets (PDS) for the SBP algorithm. These datasets consisted of data for point sources at 49 positions uniformly distributed over the detector area. We also calculated the noise in the detector circuit and verified this value by measurement. The noise value was included in the simulation. We show that the performance of the simulation closely matches the measured performance. The simulations were extended to investigate the effect of different noise levels on positioning accuracy. This paper showed that if modest improvements could be made in the circuit noise then positioning accuracy would be greatly improved. In summary, we have developed a model that can be used to simulate the performance of a variety of APD-based continuous crystal PET detectors
Keywords :
Monte Carlo methods; avalanche photodiodes; circuit noise; high energy physics instrumentation computing; nuclear electronics; position sensitive particle detectors; positron emission tomography; scintillation counters; Monte Carlo simulation; PET; Statistics Based Positioning algorithm; circuit noise; continuous lutetium yttrium orthosilicate; continuous scintillating crystal; detector circuit; multilayer avalanche photodiode based detector; parent datasets; point sources; positioning algorithm; positron emission tomography; single thin continuous crystal; spatial resolution; Avalanche photodiodes; Circuit noise; Circuit simulation; Crystals; Detectors; Nonhomogeneous media; Positron emission tomography; Sensor arrays; Spatial resolution; Yttrium; Avalanche photodiode (APD)-array; Monte Carlo; continuous lutetium yttrium ortho-silicate (LYSO); positioning algorithm;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2006.878005
Filename :
1710239
Link To Document :
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