• Title of article

    Monte Carlo Calculation of Shielding Properties of Newly Developed Heavy Concretes for Megavoltage Photon Beam Spectra Used In Radiation Therapy

  • Author/Authors

    Khaldari, Rezvan Department of Medical Physics - School of Medicine - Tabriz University of Medical Sciences, Tabriz , Mesbahi, Asghar Department of Medical Physics - School of Medicine - Tabriz University of Medical Sciences, Tabriz , Kara, Umit Suleyman Demirel University - Vocational School of Health Services - Isparta, Turkey

  • Pages
    11
  • From page
    250
  • To page
    260
  • Abstract
    Introduction Globally, the need for radiotherapy as a part of cancer management increases every year. Thus, the shielding for megavoltage radiotherapy rooms is of great importance. Materials and Methods In the present study, 14 types of developed high-density concrete with densities ranging from 2.45 to 5.11𝑔𝑐𝑚3 were simulated by using Monte Carlo method. The linear attenuation coefficient and the tenth value layer were also calculated. These dosimetric parameters were investigated for megavoltage photon beam spectra for various energies (4, 6, 10, 15, and 18 MeV) of the Varian linac and 60Co gamma rays. The results of simulation were compared with the available published results. Results The results showed that the attenuation of high-energy photons is primarily administered by the atomic number and density of the concrete. Moreover, the variation of attenuation coefficient with density was not completely linear. Conclusion It was concluded that the attenuation of high-energy photons not only depends on the density of concrete, but also on the atomic number of its composing elements.
  • Keywords
    Monte Carlo Method , High-Density Concrete , Radiation Shielding , Attenuation Coefficient
  • Journal title
    Astroparticle Physics
  • Record number

    2432036