Monte Carlo simulation of a medical linear accelerator for filtered and FFF systems

被引:2
|
作者
Yazǧan C. [1 ]
Eçen Y.C. [2 ]
机构
[1] Department of Nuclear Medicine, Isparta City Hospital, Isparta
[2] Department of Radiation Oncology, School of Medicine, Akdeniz University, Antalya
来源
Yazǧan, Çaǧr (cagri.yazgan@gmail.com) | 2017年 / TUBITAK卷 / 41期
关键词
Linear accelerator; Monte Carlo method; Monte Carlo N-particle code; Simulation attening filter-free;
D O I
10.3906/fiz-1704-30
中图分类号
学科分类号
摘要
In order to simulate radiation transport, various algorithms, codes, and programs have been developed. In this study Monte Carlo N-particle code is used to simulate a medical electron linear accelerator gantry for research purposes. Detailed geometry of the LINAC head and water phantom are modeled and simulated for calculations. Analyses are made for filtered and attening filter-free (FFF) systems. Percent depth dose and dose profile measurements are calculated with Monte Carlo simulations and compared with experimental and theoretical values for quality assurance of the model. Flux, dose, and spectrum analyses are performed for filtered and FFF systems separately. In this study, it was aimed to run the linear accelerator in a computer environment for different purposes, and this aim was achieved. . © 2017 Tübitak.
引用
收藏
页码:498 / 506
页数:8
相关论文
共 50 条
  • [1] Monte Carlo simulation of a medical linear accelerator for radiotherapy use
    Serrano, B.
    Hachem, A.
    Franchisseur, E.
    Herault, J.
    Marcie, S.
    Costa, A.
    Bensadoun, R. J.
    Barthe, J.
    Gerard, J. P.
    RADIATION PROTECTION DOSIMETRY, 2006, 119 (1-4) : 506 - 509
  • [2] Monte Carlo simulation of a clinical linear accelerator
    Lin, SY
    Chu, TC
    Lin, JP
    APPLIED RADIATION AND ISOTOPES, 2001, 55 (06) : 759 - 765
  • [3] Monte Carlo Simulation of Linear Accelerator for Dosimetry Analysis
    Francis, Seenia
    Suresh, Darshana
    Nath, Shalini
    Lakshmi, Saai D. R.
    Jayaraj, P. B.
    Puzhakkal, Niyas
    Pournami, P. N.
    2021 6TH INTERNATIONAL CONFERENCE FOR CONVERGENCE IN TECHNOLOGY (I2CT), 2021,
  • [4] Estimation of the focal spot size and shape for a medical linear accelerator by Monte Carlo simulation
    Wang, Lilie L. W.
    Leszczynski, Konrad
    MEDICAL PHYSICS, 2007, 34 (02) : 485 - 488
  • [5] Monte Carlo Simulation of an Electron Irradiation Device for Medical Application of an Electron Linear Accelerator
    Kyoung Won Jang
    Manwoo Lee
    Heuijin Lim
    Sang Koo Kang
    Sang Jin Lee
    Seung Heon Kim
    Dong Eun Lee
    Hee Chang Kim
    Dong Hyeok Jeong
    Journal of the Korean Physical Society, 2020, 76 : 588 - 591
  • [6] Monte Carlo Simulation of an Electron Irradiation Device for Medical Application of an Electron Linear Accelerator
    Jang, Kyoung Won
    Lee, Manwoo
    Lim, Heuijin
    Kang, Sang Koo
    Lee, Sang Jin
    Kim, Seung Heon
    Lee, Dong Eun
    Kim, Hee Chang
    Jeong, Dong Hyeok
    JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2020, 76 (07) : 588 - 591
  • [7] A study on scattered particles from medical linear accelerator head using monte carlo simulation
    Katayose, T. (u5856601@gs.metro-hs.ac.jp), (KEK High Energy Accelerator Research Organization):
  • [8] Monte Carlo Characterization of a Medical Linear Accelerator for Small Animal Irradiation
    Larraga-Gutierrez, J. M.
    Galvan, E.
    Moreno-Jimenez, S.
    Celis, M. A.
    Diaz-Ruiz, A.
    Rios, C.
    MEDICAL PHYSICS, 2008, 35 (06)
  • [9] EURADOS intercomparison exercise on Monte Carlo modelling of a medical linear accelerator
    Caccia, Barbara
    Le Roy, Maiwenn
    Blideanu, Valentin
    Andenna, Claudio
    Arun, Chairmadurai
    Czarnecki, Damian
    El Bardouni, Tarek
    Gschwind, Regine
    Huot, Nicolas
    Martin, Eric
    Zink, Klemens
    Zoubair, Mariam
    Price, Robert
    de Carlan, Loic
    ANNALI DELL ISTITUTO SUPERIORE DI SANITA, 2017, 53 (04): : 314 - 321
  • [10] Modeling 6 MeV Electron Beam From Medical Linear Accelerator Using Monte Carlo Simulation
    Dechsupa, P.
    Tannanonta, C.
    Phaisangittisakul, N.
    MEDICAL PHYSICS, 2009, 36 (06)