FLUKA Monte Carlo for Basic Dosimetric Studies of Dual Energy Medical Linear Accelerator

Author:

Abdul Haneefa K.1,Cyriac T. Siji23,Musthafa M. M.4,Ganapathi Raman R.3,Hridya V. T.5,Siddhartha A.6,Shakir K. K.6

Affiliation:

1. Department of Physics, University & INFN of Torino, Via P.Giuria, 10125 Torino, Italy

2. Department of Radiation Therapy, HCG-Dr. Balabhai Nanavati Hospital, Vile Parle (West), Mumbai 400 056, India

3. Department of Physics, Noorul Islam Centre for Higher Education, Kumaracoil, Thuckalay, Kanyakumari District, Tamilnadu 629 180, India

4. Department of Physics, University of Calicut, Thenhipalam, Kerala 673635, India

5. Department of Radiation Therapy, K.S Hegde Medical Academy, Nitte University, Deralakatte, Mangalore, Karnataka 575018, India

6. Department of Radiation Therapy, AJ Cancer Institute-Kuntikana, Mangalore, Karnataka 575004, India

Abstract

General purpose Monte Carlo code for simulation of particle transport is used to study the basic dosimetric parameters like percentage depth dose and dose profiles and compared with the experimental measurements from commercial dual energy medical linear accelerator. Varian Clinac iX medical linear accelerator with dual energy photon beams (6 and 15 MV) is simulated using FLUKA. FLAIR is used to visualize and edit the geometry. Experimental measurements are taken for 100 cm source-to-surface (SSD) in 50 × 50 × 50 cm3 PTW water phantom using 0.12 cc cylindrical ionization chamber. Percentage depth dose for standard square field sizes and dose profiles for various depths are studied in detail. The analysis was carried out using ROOT (a DATA analysis frame work developed at CERN) system. Simulation result shows good agreement in percentage depth dose and beam profiles with the experimental measurements for Varian Clinac iX dual energy medical linear accelerator.

Publisher

Hindawi Limited

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