We determined the distribution of activation products inside the magnet coils of a medical cyclotron that has been operational for fifteen years. Besides FLUKA, we based our approach on new software tools (RAW and ActiWiz) developed for high-energy accelerators at CERN. A combined analysis of measurements on the coils with Monte-Carlo simulations resulted in a detailed three-dimensional radiological characterisation of the coils. Our results provide the required information for the radiation protection expert to identify the appropriate waste elimination scheme
The cyclotron is the best accelerator to produce radioisotopes for medical applications because of i...
In the planning of a new cyclotron facility, an accurate knowledge of the radiation field around the...
Medical linear accelerators are increasingly used in radiotherapy. During the operational life of th...
Radiation protection (RP) in the use of medical cyclotrons involves many aspects both in the routine...
During the operational life of a PET cyclotron, the concrete walls of the vault are activated by sec...
Beam losses in dedicated 230-250 MeV cyclotrons for<br />proton therapy cause radioactivity in machi...
In order to evaluate the state of activation in a cyclotron facility used for the radioisotope produ...
none10noBiomedical cyclotrons for production of Positron Emission Tomography (PET) radionuclides and...
The medical cyclotron at the Bern University Hospital (Inselspital) is used for both routine 18 F pr...
neutrons. For this reason when considering dismantling of such accelerators, a considerable amount ...
During production of F-18 in a medical cyclotron, high energy protons and secondary neutrons hit the...
During the operational life of a PET Cyclotron, the concrete walls of the cyclotron vault are activa...
The operation of particle accelerators at CERN requires the use of electromagnets, which are acceler...
Next-generation proton therapy centres are evolving towards compact designs to reduce construction a...
The evaluation of high activity induced in target components in using a medical cyclotron to produce...
The cyclotron is the best accelerator to produce radioisotopes for medical applications because of i...
In the planning of a new cyclotron facility, an accurate knowledge of the radiation field around the...
Medical linear accelerators are increasingly used in radiotherapy. During the operational life of th...
Radiation protection (RP) in the use of medical cyclotrons involves many aspects both in the routine...
During the operational life of a PET cyclotron, the concrete walls of the vault are activated by sec...
Beam losses in dedicated 230-250 MeV cyclotrons for<br />proton therapy cause radioactivity in machi...
In order to evaluate the state of activation in a cyclotron facility used for the radioisotope produ...
none10noBiomedical cyclotrons for production of Positron Emission Tomography (PET) radionuclides and...
The medical cyclotron at the Bern University Hospital (Inselspital) is used for both routine 18 F pr...
neutrons. For this reason when considering dismantling of such accelerators, a considerable amount ...
During production of F-18 in a medical cyclotron, high energy protons and secondary neutrons hit the...
During the operational life of a PET Cyclotron, the concrete walls of the cyclotron vault are activa...
The operation of particle accelerators at CERN requires the use of electromagnets, which are acceler...
Next-generation proton therapy centres are evolving towards compact designs to reduce construction a...
The evaluation of high activity induced in target components in using a medical cyclotron to produce...
The cyclotron is the best accelerator to produce radioisotopes for medical applications because of i...
In the planning of a new cyclotron facility, an accurate knowledge of the radiation field around the...
Medical linear accelerators are increasingly used in radiotherapy. During the operational life of th...