International dosimetry protocols are based on determinations of absorbed dose to water. Ideally, the phantom material should be water equivalent; that is, it should have the same absorption and scatter properties as water. This study presents theoretical, experimental and Monte Carlo modeling of water-equivalence of Fricke and polymer (NIPAM, PAGAT and itaconic acid ITABIS) gel dosimeters. Mass and electronic densities along with effective atomic number were calculated by means of theoretical approaches. Samples were scanned by standard computed tomography. Photon mass attenuation coefficients and electron stopping powers were examined. Theoretical, Monte Carlo and experimental results confirmed good water-equivalence for all gel dosimeter...
Tracking the position of a moving radiation detector in time and space during data acquisition can r...
The radiological properties of the PRESAGE and PAGAT polymer dosimeters have been investigated and t...
[[abstract]]With advances in therapeutic instruments and techniques, three-dimensional dose delivery...
Two new formulations of N-isopropylacrylamide (NIPAM) based three dimensional (3D) gel dosimeters ha...
Gel dosimeters, including radiochromic types like Fricke, as well as polymer formulations, are consi...
The radiological properties of the normoxic polymer gel dosimeters MAGIC, MAGAS, and MAGAT [methacry...
Purpose: Dosimetry of ionizing radiation quantifies the energy deposited by an incident beam to the ...
Gel dosimeters are of increasing interest in the field of radiation oncology as the only truly three...
Radiological properties of gel dosimeters and phantom materials are often compared against each othe...
Purpose: PRESAGE® is a dosimeter made of polyurethane, which is suitable for 3D dosimetry in modern ...
Gel dosimetry has proved to be useful to determine absorbed dose distributions in radiotherapy, as w...
Purpose: Polymer gel materials are used as dosimeters to provide three dimensional radiation dose di...
Micelle gel is a radiochromic hydrogel with the potential to be used as a three dimensional (3D) rad...
Gel dosimetry has proved to be a valuable technique for absorbed dose distribution measurements in r...
Polymer gel dosimeters have specific advantages for recording 3D radiation dose distribution in diag...
Tracking the position of a moving radiation detector in time and space during data acquisition can r...
The radiological properties of the PRESAGE and PAGAT polymer dosimeters have been investigated and t...
[[abstract]]With advances in therapeutic instruments and techniques, three-dimensional dose delivery...
Two new formulations of N-isopropylacrylamide (NIPAM) based three dimensional (3D) gel dosimeters ha...
Gel dosimeters, including radiochromic types like Fricke, as well as polymer formulations, are consi...
The radiological properties of the normoxic polymer gel dosimeters MAGIC, MAGAS, and MAGAT [methacry...
Purpose: Dosimetry of ionizing radiation quantifies the energy deposited by an incident beam to the ...
Gel dosimeters are of increasing interest in the field of radiation oncology as the only truly three...
Radiological properties of gel dosimeters and phantom materials are often compared against each othe...
Purpose: PRESAGE® is a dosimeter made of polyurethane, which is suitable for 3D dosimetry in modern ...
Gel dosimetry has proved to be useful to determine absorbed dose distributions in radiotherapy, as w...
Purpose: Polymer gel materials are used as dosimeters to provide three dimensional radiation dose di...
Micelle gel is a radiochromic hydrogel with the potential to be used as a three dimensional (3D) rad...
Gel dosimetry has proved to be a valuable technique for absorbed dose distribution measurements in r...
Polymer gel dosimeters have specific advantages for recording 3D radiation dose distribution in diag...
Tracking the position of a moving radiation detector in time and space during data acquisition can r...
The radiological properties of the PRESAGE and PAGAT polymer dosimeters have been investigated and t...
[[abstract]]With advances in therapeutic instruments and techniques, three-dimensional dose delivery...