Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation

Introdution: A careful study of the physical and biological properties of helium ion radiation on the various cell lines is essential for the treatment planning. In this study, the biological response of several different cell lines has been investigated in 4He ions. Methods: Physical dose profiles...

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Main Author: Ladan Rezaee
Format: Article
Language:fas
Published: Shahid Sadoughi University of Medical Sciences 2019-01-01
Series:Majallah-i Dānishgāh-i ’Ulūm-i Pizishkī-i Shahīd Ṣadūqī Yazd
Subjects:
Online Access:http://jssu.ssu.ac.ir/browse.php?a_code=A-10-3608-1&slc_lang=en&sid=1
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spelling doaj-b052e0e62d784b9f8e48c339558e90772020-11-25T03:37:03ZfasShahid Sadoughi University of Medical SciencesMajallah-i Dānishgāh-i ’Ulūm-i Pizishkī-i Shahīd Ṣadūqī Yazd2228-57412228-57332019-01-01268671684Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiationLadan Rezaee0 Shiraz Branch, Islamic Azad University Introdution: A careful study of the physical and biological properties of helium ion radiation on the various cell lines is essential for the treatment planning. In this study, the biological response of several different cell lines has been investigated in 4He ions. Methods: Physical dose profiles and Linear Energy Transfer (LET) calculations were performed using the Monte Carlo Geant4 code. By studying the mixed radiation field, the biological effect of 4He primary ions, 3He and 6He secondary ions, as well as secondary proton, deuteron and triton are considered in calculations. Results: Biological doses and cell survival levels have been compared for these cell lines. The variation of relative biological effectiveness (RBE) for each cell line is calculated as a function of the phantom depth. The results have shown that the cell lines with the highest (α/β)ph levels have a higher sensitivity to damage cells against 4He radiation. Conclusion: Among the studied cell lines, the most appropriate treatment for 4He ion, the Colon adenocarcinoma cancer cell line has been selected. In addition, due to the large variation in RBE relative to the depth in the phantom, it is necessary to consider a variable RBE instead of a constant RBE.http://jssu.ssu.ac.ir/browse.php?a_code=A-10-3608-1&slc_lang=en&sid=1Hadron Therapy Geant4 code Relative biological effectiveness Biological dose Helium.
collection DOAJ
language fas
format Article
sources DOAJ
author Ladan Rezaee
spellingShingle Ladan Rezaee
Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
Majallah-i Dānishgāh-i ’Ulūm-i Pizishkī-i Shahīd Ṣadūqī Yazd
Hadron Therapy
Geant4 code
Relative biological effectiveness
Biological dose
Helium.
author_facet Ladan Rezaee
author_sort Ladan Rezaee
title Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
title_short Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
title_full Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
title_fullStr Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
title_full_unstemmed Investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
title_sort investigating the response of different cell lines to the mixed radiation field produced of helium ion radiation
publisher Shahid Sadoughi University of Medical Sciences
series Majallah-i Dānishgāh-i ’Ulūm-i Pizishkī-i Shahīd Ṣadūqī Yazd
issn 2228-5741
2228-5733
publishDate 2019-01-01
description Introdution: A careful study of the physical and biological properties of helium ion radiation on the various cell lines is essential for the treatment planning. In this study, the biological response of several different cell lines has been investigated in 4He ions. Methods: Physical dose profiles and Linear Energy Transfer (LET) calculations were performed using the Monte Carlo Geant4 code. By studying the mixed radiation field, the biological effect of 4He primary ions, 3He and 6He secondary ions, as well as secondary proton, deuteron and triton are considered in calculations. Results: Biological doses and cell survival levels have been compared for these cell lines. The variation of relative biological effectiveness (RBE) for each cell line is calculated as a function of the phantom depth. The results have shown that the cell lines with the highest (α/β)ph levels have a higher sensitivity to damage cells against 4He radiation. Conclusion: Among the studied cell lines, the most appropriate treatment for 4He ion, the Colon adenocarcinoma cancer cell line has been selected. In addition, due to the large variation in RBE relative to the depth in the phantom, it is necessary to consider a variable RBE instead of a constant RBE.
topic Hadron Therapy
Geant4 code
Relative biological effectiveness
Biological dose
Helium.
url http://jssu.ssu.ac.ir/browse.php?a_code=A-10-3608-1&slc_lang=en&sid=1
work_keys_str_mv AT ladanrezaee investigatingtheresponseofdifferentcelllinestothemixedradiationfieldproducedofheliumionradiation
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