Purpose: To compare and evaluate the dosimetric water equivalence of several commonly used solid phantoms for low energy photon beams. Methods: A total of ten different solid phantom materials was used in the study. The PENELOPE Monte Carlo code was used to calculate depth doses and beam profiles in all the phantom materials as well as the dose to a small water voxel at the surface of the solid phantom. These doses were compared to the corresponding doses calculated in a water phantom. The primary photon beams used ranged in energy from 50 to 280 kVp. Results: A number of phantom materials had excellent agreement in dose compared to water for all the x-ray beam energies studied. RMI457 Solid Water, Virtual Water, PAGAT, A150, and Plastic Wa...
The use of low-energy photon emitters for brachytherapy applications, as in the treatment of the pro...
In radiation dosimetry protocols, plastic is allowed as a phantom material for the determination of ...
Purpose: Beam range control is the essence of radiotherapy with heavy charged particles. In con- ven...
Purpose: To test water equivalence of solid phantoms in the kilovoltage photon energy range. Method ...
Solid phantoms are widely used in radiation therapy for both relative and reference dosimetry. Two w...
Gamma ray transmission measurements have been used to evaluate the water equivalence of solid phanto...
Plastic-water phantom materials are not exactly water equivalent since they have a different element...
To reduce the uncertainty in the calibration of radiation beams, absorbed dose to water for high ene...
Background: Many phantoms are available in the market for dosimetric and quality assurance studies o...
Introduction Based on Task Group No. 43 (TG-43U1) recommendations, water phantom is proposed as a re...
The aim of this work was to evaluate the water-equivalence of new trial plastics designed specifical...
Purpose: PRESAGE® is a dosimeter made of polyurethane, which is suitable for 3D dosimetry in modern ...
The devices used in the departments of Radiology, Nuclear Medicine, and Radiation Oncology should ch...
Purpose: To evaluate the water and tissue equivalence of a new PRESAGE® 3D dosimeter for proton ther...
Water-equivalent plastics are frequently used in dosimetry for experimental simplicity. This work e...
The use of low-energy photon emitters for brachytherapy applications, as in the treatment of the pro...
In radiation dosimetry protocols, plastic is allowed as a phantom material for the determination of ...
Purpose: Beam range control is the essence of radiotherapy with heavy charged particles. In con- ven...
Purpose: To test water equivalence of solid phantoms in the kilovoltage photon energy range. Method ...
Solid phantoms are widely used in radiation therapy for both relative and reference dosimetry. Two w...
Gamma ray transmission measurements have been used to evaluate the water equivalence of solid phanto...
Plastic-water phantom materials are not exactly water equivalent since they have a different element...
To reduce the uncertainty in the calibration of radiation beams, absorbed dose to water for high ene...
Background: Many phantoms are available in the market for dosimetric and quality assurance studies o...
Introduction Based on Task Group No. 43 (TG-43U1) recommendations, water phantom is proposed as a re...
The aim of this work was to evaluate the water-equivalence of new trial plastics designed specifical...
Purpose: PRESAGE® is a dosimeter made of polyurethane, which is suitable for 3D dosimetry in modern ...
The devices used in the departments of Radiology, Nuclear Medicine, and Radiation Oncology should ch...
Purpose: To evaluate the water and tissue equivalence of a new PRESAGE® 3D dosimeter for proton ther...
Water-equivalent plastics are frequently used in dosimetry for experimental simplicity. This work e...
The use of low-energy photon emitters for brachytherapy applications, as in the treatment of the pro...
In radiation dosimetry protocols, plastic is allowed as a phantom material for the determination of ...
Purpose: Beam range control is the essence of radiotherapy with heavy charged particles. In con- ven...