The spatial distribution of energy deposition events is an essential aspect in the determination of the radiobiological effects of ionizing radiation at the cellular level. Microdosimetry provides a theoretical framework for the description of these events, and has been used in several studies to address problems such as the characterization of Linear Energy Transfer (LET) and Relative Biological Effectiveness (RBE) of ion beams for proton therapy applications. Microdosimetry quantities and their distributions can be obtained by means of Monte Carlo simulations. In this work, we present a track structure Monte Carlo (MC) application, based on Geant4-DNA, for the computation of microdosimetric distributions of protons in liquid water. This a...
The authors attempt to establish the relative biological effectiveness (RBE) calculation for designi...
One of the current challenges in hadrontherapy is the evaluation of the biological effects due to mi...
The relative biological effectiveness (RBE) of protons is highly variable and difficult to quantify....
The spatial distribution of energy deposition events is an essential aspect in the determination of ...
Purpose: This work introduces the concept of segment-averaged linear energy transfer (LET) as a new ...
Purpose: This study aimed to investigate the microdosimetric properties of monoenergetic proton beam...
Purpose We introduce a methodology to calculate the microdosimetric quantity dose-mean lineal ene...
Proton therapy is a radiotherapy modality that can offer a better physical dose distribution when co...
International audiencePurposeIn hadrontherapy, biophysical models can be used to predict the biologi...
Purpose: To introduce a new algorithm—MicroCalc—for dose calculation by modeling microdosimetric ene...
The mechanistic Monte Carlo modeling of biological effects of ionising radiation at sub-cellular and...
The authors attempt to establish the relative biological effectiveness (RBE) calculation for designi...
One of the current challenges in hadrontherapy is the evaluation of the biological effects due to mi...
The relative biological effectiveness (RBE) of protons is highly variable and difficult to quantify....
The spatial distribution of energy deposition events is an essential aspect in the determination of ...
Purpose: This work introduces the concept of segment-averaged linear energy transfer (LET) as a new ...
Purpose: This study aimed to investigate the microdosimetric properties of monoenergetic proton beam...
Purpose We introduce a methodology to calculate the microdosimetric quantity dose-mean lineal ene...
Proton therapy is a radiotherapy modality that can offer a better physical dose distribution when co...
International audiencePurposeIn hadrontherapy, biophysical models can be used to predict the biologi...
Purpose: To introduce a new algorithm—MicroCalc—for dose calculation by modeling microdosimetric ene...
The mechanistic Monte Carlo modeling of biological effects of ionising radiation at sub-cellular and...
The authors attempt to establish the relative biological effectiveness (RBE) calculation for designi...
One of the current challenges in hadrontherapy is the evaluation of the biological effects due to mi...
The relative biological effectiveness (RBE) of protons is highly variable and difficult to quantify....