Depending on the location and depth of tumor, the electron or photon beams might be used for treatment. Electron beam have some advantages over photon beam for treatment of shallow tumors to spare the normal tissues beyond of the tumor. In the other hand, the photon beam are used for deep targets treatment. Both of these beams have some limitations, for example the dependency of penumbra with depth, and the lack of lateral equilibrium for small electron beam fields. In first, we simulated the conventional head configuration of Varian 2300 for 16 MeV electron, and the results approved by benchmarking the Percent Depth Dose (PDD) and profile of the simulation and measurement. In the next step, a perforated Lead (Pb) sheet with 1mm thickness placed at the top of the applicator holder tray. This layer producing bremsstrahlung x-ray and a part of the electrons passing through the holes, in result, we have a simultaneous mixed electron and photon beam. For making the irradiation field uniform, a layer of steel placed after the Pb layer. The simulation was performed for 10×10, and 4×4 cm2 field size. This study was showed the advantages of mixing the electron and photon beam by reduction of pure electron's penumbra dependency with the depth, especially for small fields, also decreasing of dramatic changes of PDD curve with irradiation field size.
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24 February 2015
EXOTIC NUCLEI AND NUCLEAR/PARTICLE ASTROPHYSICS (V). FROM NUCLEI TO STARS: Carpathian Summer School of Physics 2014
13–26 July 2014
Sinaia, Romania
Research Article|
February 24 2015
Production and dosimetry of simultaneous therapeutic photons and electrons beam by linear accelerator: A Monte Carlo study
Navid Khledi;
Navid Khledi
Department of Medical Radiation, Tehran Science and Research Branch, Islamic Azad University, Tehran,
Iran
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Azim Arbabi;
Azim Arbabi
Department of Radiotherapy, Imam Hossein Hospital, Shahid Beheshti Medical University, Tehran,
Iran
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Dariush Sardari;
Dariush Sardari
Department of Medical Radiation, Tehran Science and Research Branch, Islamic Azad University, Tehran,
Iran
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Mohammad Mohammadi;
Mohammad Mohammadi
Department of Medical Physics, Hamedan Medical University, Hamedan,
Iran
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Ahmad Ameri
Ahmad Ameri
Department of Radiotherapy, Imam Hossein Hospital, Shahid Beheshti Medical University, Tehran,
Iran
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Navid Khledi
Azim Arbabi
Dariush Sardari
Mohammad Mohammadi
Ahmad Ameri
Department of Medical Radiation, Tehran Science and Research Branch, Islamic Azad University, Tehran,
Iran
AIP Conf. Proc. 1645, 358–362 (2015)
Citation
Navid Khledi, Azim Arbabi, Dariush Sardari, Mohammad Mohammadi, Ahmad Ameri; Production and dosimetry of simultaneous therapeutic photons and electrons beam by linear accelerator: A Monte Carlo study. AIP Conf. Proc. 24 February 2015; 1645 (1): 358–362. https://doi.org/10.1063/1.4909601
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