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GATE: a simulation toolkit for PET and SPECT

Physics in Medicine and Biology · 2004 · Vol. 49(19) · pp. 4543–4561
S JanG. SantinD. StrulSteven StaelensKarine AssiéD. AutretStéphane AvnerR. BarbierManuel BardièsP BloomfieldD. BrasseVincent BretonP. BruyndonckxIrène BuvatArion F. ChatziioannouYong ChoiYong Hyun ChungClaude ComtatD. DonnarieixLudovic FerrerStephen J. GlickC.J. GroiselleDavid GuezP-F HonoreS Kerhoas-CavataAssen S. KirovV. KohliMichel KooleM. KrieguerD.J. van der LaanF. LamareG. LargeronCarole LartizienD. LazaroMarnix C. MaasLydia MaigneF. MayetF. MelotCharbel MerhebE. PennacchioJ. A. Pérez-HernándezU. PietrzykFernando R. RannouM. ReyDennis R. SchaartC. Ross SchmidtleinL. SimonT. Y. SongJ-M VieiraDimitris VisvikisRik Van de WalleE. WieërsC. Morel

Abstract

Monte Carlo simulation is an essential tool in emission tomography that can assist in the design of new medical imaging devices, the optimization of acquisition protocols and the development or assessment of image reconstruction algorithms and correction techniques. GATE, the Geant4 Application for Tomographic Emission, encapsulates the Geant4 libraries to achieve a modular, versatile, scripted simulation toolkit adapted to the field of nuclear medicine. In particular, GATE allows the description of time-dependent phenomena such as source or detector movement, and source decay kinetics. This feature makes it possible to simulate time curves under realistic acquisition conditions and to test dynamic reconstruction algorithms. This paper gives a detailed description of the design and development of GATE by the OpenGATE collaboration, whose continuing objective is to improve, document and validate GATE by simulating commercially available imaging systems for PET and SPECT. Large effort is also invested in the ability and the flexibility to model novel detection systems or systems still under design. A public release of GATE licensed under the GNU Lesser General Public License can be downloaded at http:/www-lphe.epfl.ch/GATE/. Two benchmarks developed for PET and SPECT to test the installation of GATE and to serve as a tutorial for the users are presented. Extensive validation of the GATE simulation platform has been started, comparing simulations and measurements on commercially available acquisition systems. References to those results are listed. The future prospects towards the gridification of GATE and its extension to other domains such as dosimetry are also discussed.

Medical Imaging Techniques and ApplicationsRadiation Detection and Scintillator TechnologiesNuclear Physics and ApplicationsModular designComputer scienceDetectorFlexibility (engineering)Gate arrayMonte Carlo methodField (mathematics)Computer engineeringSimulationComputer hardware

MeSH terms

Computer SimulationMonte Carlo MethodSoftwareThermodynamicsReproducibility of ResultsTomography, Emission-Computed, Single-Photon

Funding

  • National Science Foundation
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Fonds Wetenschappelijk Onderzoek
  • Vlaamse regering
  • National Cancer Institute
Citations
2,111
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36
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References
ROOT — An object oriented data analysis framework
Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 1997 · 4,758 citations
Geant4—a simulation toolkit
Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 2003 · 23,965 citations
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GATE: a simulation toolkit for PET and SPECT · Scinovex