Determination of effective bremsstrahlung spectra and electron contamination for photon dose calculations
Определение эффективных спектров тормозного излучения и электролактового (загрязнения электронами) для расчёта дозы фотонов
1989-10-01
SCID: 54.1/s65ak8tq
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analytical three-parameter spectrum modelconvolution method with Monte Carlo point spread functions (PSF)depth dose curves in watereffective bremsstrahlung spectraelectron contaminationmonoenergetic photon depth doses
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Abstract (AI)
A method is described for determining an effective, depth dose consistent bremsstrahlung spectra for high-energy photon beams using depth dose curves measured in water. A simple, analytical model with three parameters together with the nominal accelerating potential is used to characterise the bremsstrahlung spectra. The model is used to compute weights for depth dose curves from monoenergetic photons. These monoenergetic depth doses, calculated with the convolution method from Monte Carlo generated point spread functions (PSF), are added to yield the pure photon depth dose distribution. The parameters of the analytical spectrum model are determined using an iterative technique to minimise the difference between calculated and measured depth dose curves. The influence from contaminant electrons is determined from the difference between the calculated and the measured depth dose.
Key Findings
1
A three-parameter analytical model plus nominal accelerating potential can characterize effective bremsstrahlung spectra for high-energy photon beams.
2
An iterative fitting technique adjusts the spectrum model parameters to minimize differences between calculated and measured water depth dose curves.
3
Electron contamination is quantified as the difference between measured depth dose curves and the calculated pure photon depth dose.
4
Monoenergetic depth doses are calculated using convolution with Monte Carlo generated point spread functions (PSF).
5
Weights computed from the analytical spectrum and monoenergetic photon depth doses reconstruct the pure photon depth dose distribution.
Research Object
High-energy photon beam bremsstrahlung spectra and associated electron contamination as manifested in water depth-dose curves
Research Subject
Determination/estimation of effective depth-dose-consistent bremsstrahlung spectral parameters and the contribution of contaminant electrons by fitting an analytical three-parameter model (with nominal accelerating potential) to measured water depth-dose curves using Monte Carlo–based monoenergetic dose components
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1989-10-01
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