Purpose: The aim of this study was to determine fluence corrections necessary to convert absorbed dose to graphite, measured by graphite calorimetry, to absorbed dose to water. Fluence corrections were obtained from experiments and Monte Carlo simulations in low- and high-energy proton beams. Methods: Fluence corrections were calculated to account for the difference in fluence between water and graphite at equivalent depths. Measurements were performed with narrow proton beams. Plane-parallel-plate ionization chambers with a large collecting area compared to the beam diameter were used to intercept the whole beam. High- and low-energy proton beams were provided by a scanning and double scattering delivery system, respectively. A mathem...
The NPL graphite proton calorimeter is used to measure the dose deposited from irradiation by proton...
This work calculates beam quality correction factors (k Q) in monoenergetic proton beams using detai...
To exploit the advantages of proton beam therapy fully, it is necessary to perform three-dimensional...
The aim of this work is to develop and adapt a formalism to determine absorbed dose to water from gr...
The fluence correction factor, which accounts for the loss of primary protons and the production of ...
Background. In radiation therapy, the principal dosimetric quantity of interest is the absorbed dose...
Based on experiments and numerical simulations, a study is carried out pertaining to the conversion ...
The growing interest in light-ion therapy in recent decades has led to a need for accurate dosimetry...
The aim of this work was to evaluate the water-equivalence of new trial plastics designed specifical...
Plastic-water phantom materials are not exactly water equivalent since they have a different element...
For megavoltage electron beams, current dosimetry protocols assume well-guarded plane-parallel ioniz...
In recent codes of practice for reference dosimetry in clinical proton beams using ionization chambe...
Purpose: To evaluate the water and tissue equivalence of a new PRESAGE® 3D dosimeter for proton ther...
OBJECTIVE Monte Carlo (MC) simulations substantially improve the accuracy of predicted doses. Thi...
Monte Carlo simulations are increasingly used for dose calculations in proton therapy due to its inh...
The NPL graphite proton calorimeter is used to measure the dose deposited from irradiation by proton...
This work calculates beam quality correction factors (k Q) in monoenergetic proton beams using detai...
To exploit the advantages of proton beam therapy fully, it is necessary to perform three-dimensional...
The aim of this work is to develop and adapt a formalism to determine absorbed dose to water from gr...
The fluence correction factor, which accounts for the loss of primary protons and the production of ...
Background. In radiation therapy, the principal dosimetric quantity of interest is the absorbed dose...
Based on experiments and numerical simulations, a study is carried out pertaining to the conversion ...
The growing interest in light-ion therapy in recent decades has led to a need for accurate dosimetry...
The aim of this work was to evaluate the water-equivalence of new trial plastics designed specifical...
Plastic-water phantom materials are not exactly water equivalent since they have a different element...
For megavoltage electron beams, current dosimetry protocols assume well-guarded plane-parallel ioniz...
In recent codes of practice for reference dosimetry in clinical proton beams using ionization chambe...
Purpose: To evaluate the water and tissue equivalence of a new PRESAGE® 3D dosimeter for proton ther...
OBJECTIVE Monte Carlo (MC) simulations substantially improve the accuracy of predicted doses. Thi...
Monte Carlo simulations are increasingly used for dose calculations in proton therapy due to its inh...
The NPL graphite proton calorimeter is used to measure the dose deposited from irradiation by proton...
This work calculates beam quality correction factors (k Q) in monoenergetic proton beams using detai...
To exploit the advantages of proton beam therapy fully, it is necessary to perform three-dimensional...