PURPOSE: The role of track structures for understanding the biological effects of radiation has been the subject of research activities for decades. The physics that describes such processes is the core Monte Carlo codes, such as the biophysical PARTRAC (PARticle TRACks) code described in this review, which follow the mechanisms of radiation-matter interaction from the early stage. In this paper a review of the track structure theory (and of its possible extension concerning non-DNA targets) is presented MATERIALS AND METHODS: The role of radiation quality and track structure is analyzed starting from the heavy ions results obtained with the biophysical Monte Carlo code PARTRAC (PARticles TRACks). PARTRAC calculates DNA damage in human cell...
An overview is given on bottom-up stochastic modeling of radiation-induced effects on sub- cellular ...
The yield of DNA double-strand breaks (dsb) and DNA complex lesions induced by protons and alpha-par...
The PARTRAC code has been developed constantly in the last several years. It is a Monte Carlo code b...
Purpose: The role of track structures for understanding the biological effects of radiation has been...
Purpose: The role of track structures for understanding the biological effects of radiation has been...
This review describes the PARTRAC suite of comprehensive Monte Carlo simulation tools for calculatio...
The estimation of the risk from low doses of ionizing radiation is still a debated question. Our kno...
Track structure based simulations valuably complement experimental research on biological effects of...
Track structure based simulations valuably complement experimental research on biological effects of...
Existing radiation codes for biomedical applications face the challenge of dealing with largely diff...
Existing radiation codes for biomedical applications face the challenge of dealing with largely diff...
Existing radiation codes for biomedical applications face the challenge of dealing with largely diff...
The PARTRAC code enables to simulate, using Monte Carlo methods, individual energy deposition events...
The first part of this contribution focuses on simulations of biological effects of radiation on sub...
Ionising radiation is incredibly effective at causing biological effects. This is due to the unique ...
An overview is given on bottom-up stochastic modeling of radiation-induced effects on sub- cellular ...
The yield of DNA double-strand breaks (dsb) and DNA complex lesions induced by protons and alpha-par...
The PARTRAC code has been developed constantly in the last several years. It is a Monte Carlo code b...
Purpose: The role of track structures for understanding the biological effects of radiation has been...
Purpose: The role of track structures for understanding the biological effects of radiation has been...
This review describes the PARTRAC suite of comprehensive Monte Carlo simulation tools for calculatio...
The estimation of the risk from low doses of ionizing radiation is still a debated question. Our kno...
Track structure based simulations valuably complement experimental research on biological effects of...
Track structure based simulations valuably complement experimental research on biological effects of...
Existing radiation codes for biomedical applications face the challenge of dealing with largely diff...
Existing radiation codes for biomedical applications face the challenge of dealing with largely diff...
Existing radiation codes for biomedical applications face the challenge of dealing with largely diff...
The PARTRAC code enables to simulate, using Monte Carlo methods, individual energy deposition events...
The first part of this contribution focuses on simulations of biological effects of radiation on sub...
Ionising radiation is incredibly effective at causing biological effects. This is due to the unique ...
An overview is given on bottom-up stochastic modeling of radiation-induced effects on sub- cellular ...
The yield of DNA double-strand breaks (dsb) and DNA complex lesions induced by protons and alpha-par...
The PARTRAC code has been developed constantly in the last several years. It is a Monte Carlo code b...