The BIANCA biophysical model of cell death and chromosome aberrations was further refined and applied to predict the biological effectiveness along Spread-Out Bragg Peaks used in hadrontherapy. The simulation outcomes were compared with in vitro survival data on protons, He-ions and C-ions over a wide LET range, and the particle- and LET-dependence of the DNA Cluster Lesions (CLs) yields used as input parameters was investigated. For each particle type, the CL yield was found to increase with LET in a linear-quadratic fashion; fitting the CL yields allowed to predict cell death and chromosome aberrations in principle at any depth along a longitudinal proton dose profile used at CNAO. A clear increase in effectiveness was found in the SOBP d...
Background: The use of protons was first suggested for use in treating cancer in 1946, due to its pr...
A mechanism-based model of radiation cell death will be presented, assuming that dicentrics, rings a...
International audienceFor the evaluation of the biological effects, Monte Carlo toolkits were used t...
The BIANCA biophysical model of cell death and chromosome aberrations was further refined and applie...
The BIANCA biophysical model was used to simulate cell survival curves by protons, He-and C-ions ove...
An upgraded version of the BIANCA II biophysical model was applied to a low- and a high- α/β ratio c...
: Chromosome aberrations are widely considered among the best biomarkers of radiation health risk du...
In the context of cell death induced by ionizing radiation, the BIANCA biophysical model was used to...
In the framework of RBE modelling for hadron therapy, the BIANCA biophysical model was extended to O...
A two-parameter biophysical model cal led BIANCA (BIophysical ANalysis of Cell death and chromosome...
Cell death is a crucial endpoint in radiation damage, and many theoretical models have been proposed...
This paper presents a biophysical model of radiation-induced cell death, implemented as a Monte Car...
A mechanism-based, two-parameter biophysical model of cell killing was developed, with the aim of el...
Background: The use of protons was first suggested for use in treating cancer in 1946, due to its pr...
A mechanism-based model of radiation cell death will be presented, assuming that dicentrics, rings a...
International audienceFor the evaluation of the biological effects, Monte Carlo toolkits were used t...
The BIANCA biophysical model of cell death and chromosome aberrations was further refined and applie...
The BIANCA biophysical model was used to simulate cell survival curves by protons, He-and C-ions ove...
An upgraded version of the BIANCA II biophysical model was applied to a low- and a high- α/β ratio c...
: Chromosome aberrations are widely considered among the best biomarkers of radiation health risk du...
In the context of cell death induced by ionizing radiation, the BIANCA biophysical model was used to...
In the framework of RBE modelling for hadron therapy, the BIANCA biophysical model was extended to O...
A two-parameter biophysical model cal led BIANCA (BIophysical ANalysis of Cell death and chromosome...
Cell death is a crucial endpoint in radiation damage, and many theoretical models have been proposed...
This paper presents a biophysical model of radiation-induced cell death, implemented as a Monte Car...
A mechanism-based, two-parameter biophysical model of cell killing was developed, with the aim of el...
Background: The use of protons was first suggested for use in treating cancer in 1946, due to its pr...
A mechanism-based model of radiation cell death will be presented, assuming that dicentrics, rings a...
International audienceFor the evaluation of the biological effects, Monte Carlo toolkits were used t...