The TOPAS Monte Carlo (MC) system is used in radiation therapy and medical imaging research, having played a significant role in making Monte Carlo simulations widely available for proton therapy related research. While TOPAS provides detailed simulations of patient scale properties, the fundamental unit of the biological response to radiation is a cell. Thus, our goal was to develop TOPAS-nBio, an extension of TOPAS dedicated to advance understanding of radiobiological effects at the (sub-)cellular, (i.e., the cellular and sub-cellular) scale. TOPAS-nBio was designed as a set of open source classes that extends TOPAS to model radiobiological experiments. TOPAS-nBio is based on and extends Geant4-DNA, which extends the Geant4 toolkit, the b...
The use of Monte Carlo (MC) simulations remains a powerful tool to study the biological effects indu...
Monte Carlo (MC) mechanistic simulations are a promising tool for the modeling of early DNA damage i...
International audienceWith the aim of better understanding the mechanisms leading to side effects of...
International audienceThe TOPAS Monte Carlo (MC) system is used in radiation therapy and medical ima...
Simulation of water radiolysis and the subsequent chemistry provides important information on the ef...
The chemical stage of the Monte Carlo track-structure simulation code Geant4-DNA has been revised an...
The aim of this work is to extend a widely used proton Monte Carlo tool, TOPAS, towards the modeling...
International audienceComputational simulations, such as Monte Carlo track structure simulations, of...
1. Introduction Ionising radiation induced DNA damage and subsequent biological responses depend on ...
Ionising radiation induced DNA damage and subsequent biological responses to it depend on the radiat...
Introduction: Monte Carlo (MC) mechanistic simulations are a promising tool for the modeling of earl...
An integrated radiobiological model has been developed in this thesis using the Monte Carlo toolkit ...
The use of Monte Carlo (MC) simulations remains a powerful tool to study the biological effects indu...
Monte Carlo (MC) mechanistic simulations are a promising tool for the modeling of early DNA damage i...
International audienceWith the aim of better understanding the mechanisms leading to side effects of...
International audienceThe TOPAS Monte Carlo (MC) system is used in radiation therapy and medical ima...
Simulation of water radiolysis and the subsequent chemistry provides important information on the ef...
The chemical stage of the Monte Carlo track-structure simulation code Geant4-DNA has been revised an...
The aim of this work is to extend a widely used proton Monte Carlo tool, TOPAS, towards the modeling...
International audienceComputational simulations, such as Monte Carlo track structure simulations, of...
1. Introduction Ionising radiation induced DNA damage and subsequent biological responses depend on ...
Ionising radiation induced DNA damage and subsequent biological responses to it depend on the radiat...
Introduction: Monte Carlo (MC) mechanistic simulations are a promising tool for the modeling of earl...
An integrated radiobiological model has been developed in this thesis using the Monte Carlo toolkit ...
The use of Monte Carlo (MC) simulations remains a powerful tool to study the biological effects indu...
Monte Carlo (MC) mechanistic simulations are a promising tool for the modeling of early DNA damage i...
International audienceWith the aim of better understanding the mechanisms leading to side effects of...