Functional forms for photon spectra of clinical linacs
Функциональные формы спектров фотонов клинических линейных ускорителей
2011-11-29
SCID: 54.1/a736cyvm
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Monte Carlo spectra benchmarkfunctional forms for photon spectramean incident electron kinetic energyphoton spectra of clinical linacsspectral unfolding from dosimetric measurements
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Abstract (AI)
Specifying photon spectra of clinical linacs using a functional form is useful for many applications, including virtual source modelling and spectral unfolding from dosimetric measurements such as transmission data or depth-dose curves. In this study, 11 functional forms from the literature are compiled and quantitatively compared. A new function is proposed which offers improvements over existing ones. The proposed function is simple, physics-based and has four free parameters, one of which is the mean incident electron kinetic energy. A comprehensive benchmark set of validated, high-precision Monte Carlo spectra is generated and used to evaluate the strengths and limitations of different functions. The benchmark set has 65 spectra (3.5-30 MV) from Varian, Elekta, Siemens, Tomotherapy, Cyberknife and research linacs. The set includes spectra on- and off-axis from linacs with and without a flattening filter, and in treatment and imaging modes. The proposed function gives the lowest spectral deviations among all functions. It reproduces the energy fluence values in each bin for the benchmark set with a normalized root-mean-square deviation of 1.7%. The mean incident electron kinetic energy, maximum photon energy, most-probable energy and average energy are reproduced, on average, within 1.4%, 4.3%, 3.9% and 0.6% of their true values, respectively. The proposed function is well behaved when used for spectral unfolding from dosimetric data. The contribution of the 511 keV annihilation peak and the energy spread of the incident electron beam can be added as additional free parameters.
Key Findings
1
A benchmark set of 65 validated high-precision Monte Carlo spectra (3.5–30 MV) from multiple manufacturers and modes was generated for evaluation.
2
A new simple, physics-based four-parameter function is proposed, with one parameter as the mean incident electron kinetic energy.
3
Eleven existing functional forms for clinical linac photon spectra were compiled and quantitatively compared.
4
The proposed function achieved the lowest spectral deviations among all tested functions, with a normalized root-mean-square deviation of 1.7% across the benchmark set.
5
The proposed function is well behaved for spectral unfolding from dosimetric data, and can include the 511 keV annihilation peak and incident electron energy spread as additional parameters.
6
The proposed function reproduces mean incident electron kinetic energy, maximum photon energy, most-probable energy, and average energy within 1.4%, 4.3%, 3.9%, and 0.6% on average, respectively.
Research Object
Photon spectra of clinical linear accelerators (linacs)
Research Subject
Accuracy and functional representation of photon spectra using and comparing parametric functional forms (including a new four-parameter physics-based function) evaluated against high-precision Monte Carlo benchmark spectra for various linac types, energies, and modes
Publication Details
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2011-11-29
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