In medical applications, high-energy linear accelerators are increasingly used. However, during a cancer treatment, unwanted photoneutrons caused by high-energy photon beams (>10 MV) increase the secondary cancer risk. This study aimed to investigate the effects of the square field size and distance to the isocenter on the neutron contamination emitted by an Elekta Versa HD medical linear accelerator using a Thermo Scientific RadEye neutron detector. The measurements were carried out for 18-MV photons with different square field sizes and different distances from the isocenter. It was clearly seen that the neutron dose equivalent decreases with both the increasing distance from the isocenter and square field size. Also, in order to analyze ...
Electron Linear Accelerators (linacs) used in Radiotherapy treatments produce undesired photoneutron...
One of the major causes of secondary malignancies after radiotherapy treatments are peripheral doses...
One of the major causes of secondary malignancies after radiotherapy treatments are peripheral doses...
In medical applications, high-energy linear accelerators are increasingly used. However, during a ca...
High energy linacs have several advantages including lower skin dose and higher dose rate at deep si...
AbstractAt present, high energy electron linear accelerators (LINACs) producing photons with energie...
At present, high energy electron linear accelerators (LINACs) producing photons with energies higher...
At present, high energy electron linear accelerators (LINACs) producing photons with energies higher...
High-energy linear accelerators (linacs) have several advantages, including low skin doses and high ...
Medical linear accelerators (linacs) operated above 8 MV photon energy have their output contaminate...
Graduation date: 2011The photoneutron production from three Varian linear accelerators ranging in en...
Determination and understanding of out-of-field neutron and photon doses in accelerator-based radiot...
AbstractHigh-energy linear accelerators are increasingly used in the medical field. However, the unw...
Bremsstrahlung X-rays from high-energy linear accelerators (Linacs) produce neutrons as a result ofp...
Electron Linear Accelerators (linacs) used in Radiotherapy treatments produce undesired photoneutron...
Electron Linear Accelerators (linacs) used in Radiotherapy treatments produce undesired photoneutron...
One of the major causes of secondary malignancies after radiotherapy treatments are peripheral doses...
One of the major causes of secondary malignancies after radiotherapy treatments are peripheral doses...
In medical applications, high-energy linear accelerators are increasingly used. However, during a ca...
High energy linacs have several advantages including lower skin dose and higher dose rate at deep si...
AbstractAt present, high energy electron linear accelerators (LINACs) producing photons with energie...
At present, high energy electron linear accelerators (LINACs) producing photons with energies higher...
At present, high energy electron linear accelerators (LINACs) producing photons with energies higher...
High-energy linear accelerators (linacs) have several advantages, including low skin doses and high ...
Medical linear accelerators (linacs) operated above 8 MV photon energy have their output contaminate...
Graduation date: 2011The photoneutron production from three Varian linear accelerators ranging in en...
Determination and understanding of out-of-field neutron and photon doses in accelerator-based radiot...
AbstractHigh-energy linear accelerators are increasingly used in the medical field. However, the unw...
Bremsstrahlung X-rays from high-energy linear accelerators (Linacs) produce neutrons as a result ofp...
Electron Linear Accelerators (linacs) used in Radiotherapy treatments produce undesired photoneutron...
Electron Linear Accelerators (linacs) used in Radiotherapy treatments produce undesired photoneutron...
One of the major causes of secondary malignancies after radiotherapy treatments are peripheral doses...
One of the major causes of secondary malignancies after radiotherapy treatments are peripheral doses...