A computational model of radiation-induced chromosome aberrations in human cells within the PARTRAC Monte Carlo simulation framework is presented. The model starts from radiation-induced DNA damage assessed by overlapping radiation track structures with multi-scale DNA and chromatin models, ranging from DNA double-helix in atomic resolution to chromatin fibre loops, heterochromatic and euchromatic regions, and chromosome territories. The repair of DNA double-strand breaks via non-homologous end-joining is followed. Initial spatial distribution and complexity, diffusive motion, enzymatic processing, synapsis and ligation of individual DNA ends from the breaks are simulated. To enable scoring of different chromosome aberration types resulting...
Purpose: To investigate the mechanisms underlying the induction of chromosome aberrations by ionizin...
The formation of double-strand breaks (DSBs) and chromosomal aberrations (CAs) is of great importanc...
The structure of chromatin at the level of the 30 nm fibre has been studied in considerable detail, ...
The module that simulates the kinetics and yields of radiation-induced chromosome aberrations within...
A few examples of models of chromosome aberration induction are summarised and discussed on the basi...
A few examples of models of chromosome aberration induction are summarised and discussed on the basi...
Ionizing radiation threatens genome integrity by causing DNA damage. Monte Carlo simulation of the i...
The biophysical simulation code PARTRAC enables, by combining track structure calculations with DNA ...
The biophysical simulation code PARTRAC enables, by combining track structure calculations with DNA ...
An overview is given on bottom-up stochastic modeling of radiation-induced effects on sub- cellular ...
A few examples of models of chromosome aberration induction are summarised and discussed on the basi...
The first part of this contribution focuses on simulations of biological effects of radiation on sub...
Several advances have been achieved in the knowledge of nuclear architecture and functions during th...
In the presented research we propose to improve on historically accepted radiobiological models via ...
Purpose: To investigate the mechanisms underlying the induction of chromosome aberrations by ionizin...
Purpose: To investigate the mechanisms underlying the induction of chromosome aberrations by ionizin...
The formation of double-strand breaks (DSBs) and chromosomal aberrations (CAs) is of great importanc...
The structure of chromatin at the level of the 30 nm fibre has been studied in considerable detail, ...
The module that simulates the kinetics and yields of radiation-induced chromosome aberrations within...
A few examples of models of chromosome aberration induction are summarised and discussed on the basi...
A few examples of models of chromosome aberration induction are summarised and discussed on the basi...
Ionizing radiation threatens genome integrity by causing DNA damage. Monte Carlo simulation of the i...
The biophysical simulation code PARTRAC enables, by combining track structure calculations with DNA ...
The biophysical simulation code PARTRAC enables, by combining track structure calculations with DNA ...
An overview is given on bottom-up stochastic modeling of radiation-induced effects on sub- cellular ...
A few examples of models of chromosome aberration induction are summarised and discussed on the basi...
The first part of this contribution focuses on simulations of biological effects of radiation on sub...
Several advances have been achieved in the knowledge of nuclear architecture and functions during th...
In the presented research we propose to improve on historically accepted radiobiological models via ...
Purpose: To investigate the mechanisms underlying the induction of chromosome aberrations by ionizin...
Purpose: To investigate the mechanisms underlying the induction of chromosome aberrations by ionizin...
The formation of double-strand breaks (DSBs) and chromosomal aberrations (CAs) is of great importanc...
The structure of chromatin at the level of the 30 nm fibre has been studied in considerable detail, ...