'Survival': A simulation toolkit introducing a modular approach for radiobiological evaluations in ion beam therapy.
Articolo
Data di Pubblicazione:
2018
Abstract:
One major rationale for the application of heavy ion beams in tumour therapy is their increased
relative biological effectiveness (RBE). The complex dependencies of the RBE on dose, biological
endpoint, position in the field etc require the use of biophysical models in treatment planning
and clinical analysis. This study aims to introduce a new software, named ‘Survival’, to facilitate
the radiobiological computations needed in ion therapy. The simulation toolkit was written in
C++ and it was developed with a modular architecture in order to easily incorporate different
radiobiological models. The following models were successfully implemented: the local effect model
(LEM, version I, II and III) and variants of the microdosimetric-kinetic model (MKM). Different
numerical evaluation approaches were also implemented: Monte Carlo (MC) numerical methods
and a set of faster analytical approximations. Among the possible applications, the toolkit was used
to reproduce the RBE versus LET for different ions (proton, He, C, O, Ne) and different cell lines
(CHO, HSG). Intercomparison between different models (LEM and MKM) and computational
approaches (MC and fast approximations) were performed. The developed software could represent
an important tool for the evaluation of the biological effectiveness of charged particles in ion beam
therapy, in particular when coupled with treatment simulations. Its modular architecture facilitates
benchmarking and inter-comparison between different models and evaluation approaches. The code
is open source (GPL2 license) and available at https://github.com/batuff/Survival.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
LEM; MKM; radiobiological modelling; RBE; Humans; Kinetics; Monte Carlo Method; Proton Therapy; Radiobiology; Radiotherapy Dosage; Radiotherapy Planning, Computer-Assisted; Relative Biological Effectiveness; Software
Elenco autori:
Manganaro L.; Russo G.; Bourhaleb F.; Fausti F.; Giordanengo S.; Monaco V.; Sacchi R.; Vignati A.; Cirio R.; Attili A.
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