Title of article :
Tissue inhomogeneity in proton therapy and investigation of its effects on BRAGG peak by using MCNPX code
Author/Authors :
Shirmardi، S.P. نويسنده Nuclear Science and Technology Research Institute (NSTRI), Tehran, Iran Shirmardi, S.P. , Saniei، E. نويسنده Faculty of Energy Engineering and Physics, Amir Kabir University of Technology, Tehran, Iran Saniei, E. , Erfani، M. نويسنده Nuclear Science and Technology Research Institute (NSTRI), Tehran, Iran Erfani, M. , Shafiei، M. نويسنده , , Sepehri، B. نويسنده Faculty of Physics, Islamic Azad University, Central Tehran Branch, Tehran, Iran Sepehri, B.
Issue Information :
فصلنامه با شماره پیاپی 47 سال 2014
Pages :
7
From page :
335
To page :
341
Abstract :
Background: Hadron therapy for malignant tumor is becoming increasingly popular. There are many factors which effect on implementation of a proper treatment planning. The purpose of this work is to investigate the inhomogeneity effects as affecting factor on proton range, Full width at half maximum (FWHM) and 20% position of penumbra (P20) by MCNPX code. Materials and Methods: An inhomogeneous tissue (Bone or Adipose) with a variable thickness (0.1 cm, 0.5cm and 1.0 cm) was inserted into a phantom. Then this phantom was irradiated by 108.8 MeV proton beam located at 10 cm away from it. Particle energy deposition (PEDEP) in mesh tally card was used for simulation of Bragg curve and obtaining the proton range, FWHM and 20% position of penumbra (P20). Finally, the MCNPX results were compared with GEANT4. Results: The results of MCNPX for water phantom including 1cm adipose for range and P20 were 8.87 and 9.10 cm respectively, and for 1cm bone, range and P20 were 8.52 and 8.58 cm. By increasing the adipose thickness, range and P20 were reduced but it was vice versa for increasing the bone thickness. Also FWHM does not show a regular variation in both bone and adipose tissues. Conclusion: The results show that the location of the inhomogeneous tissues does not affect the variation of the whole shape of the Bragg curve, while it radically affects the dose in the Bragg curve. The comparison between MCNPX and GEANT4 results showed that the MCNPX results have the closer values than GEANT4 to references.
Journal title :
International Journal of Radiation Research
Serial Year :
2014
Journal title :
International Journal of Radiation Research
Record number :
2330452
Link To Document :
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