Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)

Background: Thyroid cancer is one of the most common secondary malignancies as a result of receiving therapeutic doses to the head and neck. In this study, the probability of secondary thyroid cancer risk due to neutron contamination of 15 MV Siemens Linear Accelerator (LINAC) in brain tumor 3D-Conf...

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Main Authors: Sohail Elmtalab, Iraj Abedi, Mohammadhosein Choopan Dastjerdi, Ahmad Shanei
Format: Article
Language:fas
Published: Vesnu Publications 2020-10-01
Series:مجله دانشکده پزشکی اصفهان
Subjects:
Online Access:http://jims.mui.ac.ir/index.php/jims/article/view/13087
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spelling doaj-64b0c3ceca9d4f5aa812277b970b16f62021-06-15T07:09:39ZfasVesnu Publications مجله دانشکده پزشکی اصفهان1027-75951735-854X2020-10-013858656957410.22122/jims.v38i586.130873695Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)Sohail Elmtalab0Iraj Abedi1Mohammadhosein Choopan Dastjerdi2Ahmad Shanei3MSc Student, Department of Medical Physics, School of Medicine, Isfahan University of Medical Sciences, Isfahan, IranAssistant Professor, Department of Medical Physics, School of Medicine, Isfahan University of Medical Sciences, Isfahan, IranAssistant Professor, Reactor and Nuclear Safety Research School, Nuclear Science and Technology Research Institute, Atomic Energy Organization of Iran, Isfahan, IranAssociate Professor, Department of Medical Physics, School of Medicine, Isfahan University of Medical Sciences, Isfahan, IranBackground: Thyroid cancer is one of the most common secondary malignancies as a result of receiving therapeutic doses to the head and neck. In this study, the probability of secondary thyroid cancer risk due to neutron contamination of 15 MV Siemens Linear Accelerator (LINAC) in brain tumor 3D-Conformal Radiation Therapy (3D-CRT) was calculated. Methods: Neutron fluence and neutron dose were measured at different points at the treatment table using an energy-independent neutron detector consisting of a sphere moderator and a Boron Trifluoride (BF3) counter, and the neutron dose equivalent to the thyroid was determined to calculate the probability of secondary cancer risk. Findings: The neutron dose equivalent was obtained at the central axis (0.304 mSv/Gy) and at 4 cm (0.285 mSv/Gy), 15 cm (0.229 mSv/Gy), 45 cm (0.125 mSv/Gy), and 150 cm (0.02 mSv/Gy) inferior. The neutron dose equivalent reaching the thyroid for the total prescribed dose was 12.366 mSv. According to that, the probability of secondary thyroid cancer risk was obtained as 0.001%. Conclusion: The thyroid dose in high-energy radiation therapy of brain tumor cannot cause significant biological damage. Therefore, the risk of secondary thyroid cancer due to neutron contamination is relatively low.http://jims.mui.ac.ir/index.php/jims/article/view/13087radiation dosageneutronsthyroidbrain tumorsradiation therapy
collection DOAJ
language fas
format Article
sources DOAJ
author Sohail Elmtalab
Iraj Abedi
Mohammadhosein Choopan Dastjerdi
Ahmad Shanei
spellingShingle Sohail Elmtalab
Iraj Abedi
Mohammadhosein Choopan Dastjerdi
Ahmad Shanei
Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)
مجله دانشکده پزشکی اصفهان
radiation dosage
neutrons
thyroid
brain tumors
radiation therapy
author_facet Sohail Elmtalab
Iraj Abedi
Mohammadhosein Choopan Dastjerdi
Ahmad Shanei
author_sort Sohail Elmtalab
title Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)
title_short Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)
title_full Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)
title_fullStr Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)
title_full_unstemmed Evaluation of Risk of Secondary Thyroid Cancer Caused by Neutron Dose Equivalent from Brain Tumor 3D-Conformal Radiation Therapy (3D-CRT)
title_sort evaluation of risk of secondary thyroid cancer caused by neutron dose equivalent from brain tumor 3d-conformal radiation therapy (3d-crt)
publisher Vesnu Publications
series مجله دانشکده پزشکی اصفهان
issn 1027-7595
1735-854X
publishDate 2020-10-01
description Background: Thyroid cancer is one of the most common secondary malignancies as a result of receiving therapeutic doses to the head and neck. In this study, the probability of secondary thyroid cancer risk due to neutron contamination of 15 MV Siemens Linear Accelerator (LINAC) in brain tumor 3D-Conformal Radiation Therapy (3D-CRT) was calculated. Methods: Neutron fluence and neutron dose were measured at different points at the treatment table using an energy-independent neutron detector consisting of a sphere moderator and a Boron Trifluoride (BF3) counter, and the neutron dose equivalent to the thyroid was determined to calculate the probability of secondary cancer risk. Findings: The neutron dose equivalent was obtained at the central axis (0.304 mSv/Gy) and at 4 cm (0.285 mSv/Gy), 15 cm (0.229 mSv/Gy), 45 cm (0.125 mSv/Gy), and 150 cm (0.02 mSv/Gy) inferior. The neutron dose equivalent reaching the thyroid for the total prescribed dose was 12.366 mSv. According to that, the probability of secondary thyroid cancer risk was obtained as 0.001%. Conclusion: The thyroid dose in high-energy radiation therapy of brain tumor cannot cause significant biological damage. Therefore, the risk of secondary thyroid cancer due to neutron contamination is relatively low.
topic radiation dosage
neutrons
thyroid
brain tumors
radiation therapy
url http://jims.mui.ac.ir/index.php/jims/article/view/13087
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