CERN Accelerating science

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1.
Report on G4‐Med, a Geant4 benchmarking system for medical physics applications developed by the Geant4 Medical Simulation Benchmarking Group / Arce, P (Madrid, CIEMAT) ; Bolst, D (Wollongong U.) ; Cutajar, D (Wollongong U.) ; Guatelli, S (Wollongong U.) ; Le, A (Wollongong U.) ; Rosenfeld, A B (Wollongong U.) ; Sakata, D (Wollongong U.) ; Bordage, M‐C (CRCT, Toulouse) ; Brown, J M C (KIN, Delft) ; Cirrone, P (INFN, LNS) et al.
Geant4 is a Monte Carlo code extensively used in medical physics for a wide range of applications, such as dosimetry, micro‐ and nano‐ dosimetry, imaging, radiation protection and nuclear medicine. Geant4 is continuously evolving, so it is crucial to have a system that benchmarks this Monte Carlo code for medical physics against reference data and to perform regression testing. [...]
2021 - 38 p. - Published in : Med. Phys. 48 (2021) 19-56
2.
Advances in modelling gold nanoparticle radiosensitization using new Geant4-DNA physics models / Engels, Elette (Wollongong U.) ; Bakr, Samer (Wollongong U.) ; Bolst, David (Wollongong U.) ; Sakata, Dousatsu (Wollongong U.) ; Li, Nan (Wollongong U.) ; Lazarakis, Peter (Wollongong U.) ; McMahon, Stephen J (Queen's U., Belfast) ; Ivanchenko, Vladimir (Tomsk State U. ; CERN) ; Rosenfeld, Anatoly B (Wollongong U.) ; Incerti, Sébastien (CENBG, Gradignan ; CENBG, Gradignan ; Bordeaux U.) et al.
Gold nanoparticles have demonstrated significant radiosensitization of cancer treatment with x-ray radiotherapy. To understand the mechanisms at the basis of nanoparticle radiosensitization, Monte Carlo simulations are used to investigate the dose enhancement, given a certain nanoparticle concentration and distribution in the biological medium. [...]
2020 - 16 p. - Published in : Phys. Med. Biol. 65 (2020) 225017 Fulltext from Publisher: PDF;
3.
Validation of Geant4 fragmentation for Heavy Ion Therapy / Bolst, David (Wollongong U.) ; Cirrone, Giuseppe A P (INFN, Catania) ; Cuttone, Giacomo (INFN, Catania) ; Folger, Gunter (CERN) ; Incerti, Sebastien (CENBG, Gradignan) ; Ivanchenko, Vladimir (CERN ; Tomsk State U.) ; Koi, Tatsumi (SLAC) ; Mancusi, Davide (Saclay) ; Pandola, Luciano (INFN, Catania) ; Romano, Francesco (INFN, Catania ; Teddington, Natl. Phys. Lab) et al.
$^{12}$C ion therapy has had growing interest in recent years for its excellent dose conformity. However at therapeutic energies, which can be as high as 400 MeV/u, carbon ions produce secondary fragments. [...]
2017 - 8 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 869 (2017) 68-75

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