To present details of the recent version of the 'Local Effect Model' (LEM), that has been developed and implemented in treatment planning for the ion beam therapy pilot project performed at GSI Helmholtzzentrum für Schwerionenforschung in Darmstadt, Germany.The new version of the model is based on a detailed consideration of the spatial distribution of the initial damages, i.e., double-strand breaks (DSB). This spatial distribution of DSB is obtained from the radial dose profile of the ion track using Monte Carlo methods. These distributions are then analyzed with regard to the proximity of DSB. This version of the model also facilitates the calculation of full dose response curves up to arbitrary high doses, thus allowing to thoroughly che...
International audienceIon-induced cell killing has been reported to depend on irradiation dose but a...
In a treatment planning of heave-ion radiotherapy, it is necessary to estimate the biological effec...
Radiation therapy with light ions improves treatment outcome for a number of tumor types. The advant...
To present details of the recent version of the 'Local Effect Model' (LEM), that has been developed ...
International audienceThe Local Effect Model (LEM) is a track-structure model that was developed to ...
Treatment planning in ion beam therapy requires a reliable estimation of the relative biological eff...
Clinical Monte Carlo (MC) calculations for carbon ion therapy have to provide absorbed and RBE-weigh...
We describe a novel approach to treatment planning for heavy ion radiotherapy based on the local eff...
In this contribution we report on the various calculational steps which are necessary to obtain reli...
A detailed understanding of physical and biological effects resulting from radiation exposure is cru...
International audienceIn carbon ion beams, biological effects vary along the ion track; hence, to qu...
Purpose: The increased relative biological effectiveness (RBE) of ions is one of the key benefits of...
32 pages ; 8 figuresIon-induced cell killing has been reported to depend on the irradiation dose but...
Both the microdosimetric kinetic model (MKM) and the local effect model(LEM) can be used to calculat...
10 págs.; 4 figs. 1 tab. ; Open Access funded by Creative Commons Atribution Licence 4.0Ion-beam th...
International audienceIon-induced cell killing has been reported to depend on irradiation dose but a...
In a treatment planning of heave-ion radiotherapy, it is necessary to estimate the biological effec...
Radiation therapy with light ions improves treatment outcome for a number of tumor types. The advant...
To present details of the recent version of the 'Local Effect Model' (LEM), that has been developed ...
International audienceThe Local Effect Model (LEM) is a track-structure model that was developed to ...
Treatment planning in ion beam therapy requires a reliable estimation of the relative biological eff...
Clinical Monte Carlo (MC) calculations for carbon ion therapy have to provide absorbed and RBE-weigh...
We describe a novel approach to treatment planning for heavy ion radiotherapy based on the local eff...
In this contribution we report on the various calculational steps which are necessary to obtain reli...
A detailed understanding of physical and biological effects resulting from radiation exposure is cru...
International audienceIn carbon ion beams, biological effects vary along the ion track; hence, to qu...
Purpose: The increased relative biological effectiveness (RBE) of ions is one of the key benefits of...
32 pages ; 8 figuresIon-induced cell killing has been reported to depend on the irradiation dose but...
Both the microdosimetric kinetic model (MKM) and the local effect model(LEM) can be used to calculat...
10 págs.; 4 figs. 1 tab. ; Open Access funded by Creative Commons Atribution Licence 4.0Ion-beam th...
International audienceIon-induced cell killing has been reported to depend on irradiation dose but a...
In a treatment planning of heave-ion radiotherapy, it is necessary to estimate the biological effec...
Radiation therapy with light ions improves treatment outcome for a number of tumor types. The advant...