Derivation of electron and photon energy spectra from electron beam central axis depth dose curves
Вывод энергетических спектров электронов и фотонов из кривых глубинного поглощения по центральной оси электронного пучка
2001-04-17
SCID: 54.1/53mxqesp
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Monte Carlo full phase space simulationscentral axis percentage depth dose (PDD) curveselectron energy spectrumphoton energy spectrumrandom creep algorithm
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Abstract (AI)
A method for deriving the electron and photon energy spectra from electron beam central axis percentage depth dose (PDD) curves has been investigated. The PDD curves of 6, 12 and 20 MeV electron beams obtained from the Monte Carlo full phase space simulations of the Varian linear accelerator treatment head have been used to test the method. We have employed a 'random creep' algorithm to determine the energy spectra of electrons and photons in a clinical electron beam. The fitted electron and photon energy spectra have been compared with the corresponding spectra obtained from the Monte Carlo full phase space simulations. Our fitted energy spectra are in good agreement with the Monte Carlo simulated spectra in terms of peak location, peak width, amplitude and smoothness of the spectrum. In addition, the derived depth dose curves of head-generated photons agree well in both shape and amplitude with those calculated using the full phase space data. The central axis depth dose curves and dose profiles at various depths have been compared using an automated electron beam commissioning procedure. The comparison has demonstrated that our method is capable of deriving the energy spectra for the Varian accelerator electron beams investigated. We have implemented this method in the electron beam commissioning procedure for Monte Carlo electron beam dose calculations.
Key Findings
1
A 'random creep' algorithm can determine electron and photon energy spectra from central axis percentage depth dose (PDD) curves
2
Derived depth dose curves for head-generated photons agree in shape and amplitude with those calculated from full phase space data
3
Fitted electron and photon spectra closely match Monte Carlo full phase space spectra in peak location, peak width, amplitude, and smoothness
4
Method successfully derived energy spectra for Varian 6, 12, and 20 MeV clinical electron beams as tested with Monte Carlo PDD curves
5
The method has been implemented into an automated electron beam commissioning procedure for Monte Carlo electron dose calculations
Research Object
Electron and photon energy spectra of clinical electron beams from a Varian linear accelerator (derived from central axis percentage depth dose curves)
Research Subject
Derivation and validation of electron and photon energy spectra (peak location, width, amplitude, smoothness) and reproduced depth-dose curves using a random creep algorithm compared to Monte Carlo full phase space simulations
Publication Details
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2001-04-17
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