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Phys Med Biol ; 63(5): 055011, 2018 03 02.
Article in English | MEDLINE | ID: mdl-29185992

ABSTRACT

Monte-Carlo simulations of SPECT images are notoriously slow to converge due to the large ratio between the number of photons emitted and detected in the collimator. This work proposes a method to accelerate the simulations based on fixed forced detection (FFD) combined with an analytical response of the detector. FFD is based on a Monte-Carlo simulation but forces the detection of a photon in each detector pixel weighted by the probability of emission (or scattering) and transmission to this pixel. The method was evaluated with numerical phantoms and on patient images. We obtained differences with analog Monte Carlo lower than the statistical uncertainty. The overall computing time gain can reach up to five orders of magnitude. Source code and examples are available in the Gate V8.0 release.


Subject(s)
Computer Simulation , Monte Carlo Method , Phantoms, Imaging , Photons , Tomography, Emission-Computed, Single-Photon/methods , Humans
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