DocumentCode :
840183
Title :
Improving the precision and accuracy of Monte Carlo simulation in positron emission tomography
Author :
Picard, Y. ; Thompson, C.J. ; Marrett, S.
Author_Institution :
Montreal Neurol. Inst., McGill Univ., Que., Canada
Volume :
39
Issue :
4
fYear :
1992
fDate :
8/1/1992 12:00:00 AM
Firstpage :
1111
Lastpage :
1116
Abstract :
The authors present the methods used to improve the precision and accuracy of Monte Carlo simulations which are executed in different phases for the source distribution and the phantom, the collimators, and the detectors. This has been achieved by giving a more appropriate description of the materials used in the simulations and a better fitting of the Compton scattering and photoelectric effect absorption coefficients of the materials. For many events in which the original rays were directed generally towards the detectors, the precision of the final simulation can be improved by recycling them without reseeding the random number generator, giving them a second or greater chance of being detected. For simulation programs which cascade the simulation process into source, collimator, and detection phases, recycling can improve the precision of the simulation without requiring larger files of events from the source distribution simulation phase
Keywords :
Compton effect; Monte Carlo methods; computerised tomography; photoelectricity; radioisotope scanning and imaging; Compton scattering; Monte Carlo simulation; absorption coefficients; accuracy; phantom; photoelectric effect; positron emission tomography; precision; random number generator; recycling; simulation phase; source distribution; Absorption; Collimators; Detectors; Discrete event simulation; Event detection; Imaging phantoms; Phase detection; Photovoltaic effects; Recycling; Scattering;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.159769
Filename :
159769
Link To Document :
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