Auger emitting radioisotopes are of great interest in targeted radiotherapy because, once internalised in the tumour cells, they can deliver dose locally to the radiation sensitive targets, while not affecting surrounding cells. Geant4 is a Monte Carlo code widely used to characterise the physics mechanism at the basis of targeted radiotherapy. In this work, we benchmarked the modelling of the emission of Auger electrons in Geant4 deriving from the decay of 123I, 124I, 125I radionuclides against existing theoretical approaches. We also compared Geant4 against reference data in the case of 131Cs, which is of interest for brachytherapy. In the case of 125I and 131Cs, the simulation results are compared to experimental measurements as well. Go...
Background: The importance of cellular dosimetry in both diagnostic and radiation therapy is becomin...
A revised atomic deexcitation framework for the Geant4 general purpose Monte Carlo toolkit capable o...
Purpose: The real-time monitoring of the spread-out Bragg peak would allow the planned dose delivere...
Auger-electron-emitting radioisotopes provide a unique tool that enables the targeted irradiation of...
Objective Radionuclide therapy with low-energy auger electron emitters may provide high antitumor ef...
Auger electrons emitted after nuclear decay have potential application in targeted cancer therapy. F...
To benchmark a Monte Carlo model of the Auger cascade that has been developed at the Australian Nat...
The study of interaction of radiation with matter is a field of great interest in the medical physic...
The Monte Carlo toolkit Geant4 is used to simulate the production of a number of positron emitting r...
International audienceMonte Carlo simulations are nowadays essential tools for a wide range of resea...
A localized source of electrons can be provided by radioisotopes that emit Auger electrons through a...
International audienceAbstractThe aim of this work is to estimate the biological effect of targeted ...
Auger yields from the decays of 71Ge, 99mTc, 111In and 123-125I have been calculated using a Monte C...
Auger-electron (AE) emitting radionuclides could be exploited for therapeutic purposes due to the hi...
We report the dose measurement technique for emitted particles from Cu-64 source using a combination...
Background: The importance of cellular dosimetry in both diagnostic and radiation therapy is becomin...
A revised atomic deexcitation framework for the Geant4 general purpose Monte Carlo toolkit capable o...
Purpose: The real-time monitoring of the spread-out Bragg peak would allow the planned dose delivere...
Auger-electron-emitting radioisotopes provide a unique tool that enables the targeted irradiation of...
Objective Radionuclide therapy with low-energy auger electron emitters may provide high antitumor ef...
Auger electrons emitted after nuclear decay have potential application in targeted cancer therapy. F...
To benchmark a Monte Carlo model of the Auger cascade that has been developed at the Australian Nat...
The study of interaction of radiation with matter is a field of great interest in the medical physic...
The Monte Carlo toolkit Geant4 is used to simulate the production of a number of positron emitting r...
International audienceMonte Carlo simulations are nowadays essential tools for a wide range of resea...
A localized source of electrons can be provided by radioisotopes that emit Auger electrons through a...
International audienceAbstractThe aim of this work is to estimate the biological effect of targeted ...
Auger yields from the decays of 71Ge, 99mTc, 111In and 123-125I have been calculated using a Monte C...
Auger-electron (AE) emitting radionuclides could be exploited for therapeutic purposes due to the hi...
We report the dose measurement technique for emitted particles from Cu-64 source using a combination...
Background: The importance of cellular dosimetry in both diagnostic and radiation therapy is becomin...
A revised atomic deexcitation framework for the Geant4 general purpose Monte Carlo toolkit capable o...
Purpose: The real-time monitoring of the spread-out Bragg peak would allow the planned dose delivere...