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Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy

BACKGROUND: It is important to evaluate the dose calculated by treatment planning systems (TPSs) and dose distribution in tumor and organs at risk (OARs). The aim of this study is to compare dose calculated by the PRIMO Monte Carlo code and Eclipse TPS in radiotherapy of brain cancer patients. MATER...

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Autores principales: Altuwayrish, Ali, Ghorbani, Mahdi, Bakhshandeh, Mohsen, Roozmand, Zahra, Hoseini-Ghahfarokhi, Mojtaba
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Via Medica 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9746651/
https://www.ncbi.nlm.nih.gov/pubmed/36523800
http://dx.doi.org/10.5603/RPOR.a2022.0091
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author Altuwayrish, Ali
Ghorbani, Mahdi
Bakhshandeh, Mohsen
Roozmand, Zahra
Hoseini-Ghahfarokhi, Mojtaba
author_facet Altuwayrish, Ali
Ghorbani, Mahdi
Bakhshandeh, Mohsen
Roozmand, Zahra
Hoseini-Ghahfarokhi, Mojtaba
author_sort Altuwayrish, Ali
collection PubMed
description BACKGROUND: It is important to evaluate the dose calculated by treatment planning systems (TPSs) and dose distribution in tumor and organs at risk (OARs). The aim of this study is to compare dose calculated by the PRIMO Monte Carlo code and Eclipse TPS in radiotherapy of brain cancer patients. MATERIALS AND METHODS: PRIMO simulation code was used to simulate a Varian Clinac 600C linac. The simulations were validated for the linac by comparison of the simulation and measured results. In the case of brain cancer patients, the dosimetric parameters obtained by the PRIMO code were compared with those calculated by Eclipse TPS. Gamma function analysis with 3%, 3 mm criteria was utilized to compare the dose distributions. The evaluations were based on the dosimetric parameters for the planning target volume (PTV) and OAR including D(min), D(mean,) and D(max), homogeneity index (HI), and conformity index (CI). RESULTS: The gamma function analysis showed a 98% agreement between the results obtained by the PRIMO code and measurement for the percent depth dose (PDD) and dose profiles. The corresponding value in comparing the dosimetric parameters from PRIMO code and Eclipse TPS for the brain patients was 94%, on average. The results of the PRIMO simulation were in good agreement with the measured data and Eclipse TPS calculations. CONCLUSIONS: Based on the results of this study, the PRIMO code can be utilized to simulate a medical linac with good accuracy and to evaluate the accuracy of treatment plans for patients with brain cancer.
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spelling pubmed-97466512022-12-14 Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy Altuwayrish, Ali Ghorbani, Mahdi Bakhshandeh, Mohsen Roozmand, Zahra Hoseini-Ghahfarokhi, Mojtaba Rep Pract Oncol Radiother Research Paper BACKGROUND: It is important to evaluate the dose calculated by treatment planning systems (TPSs) and dose distribution in tumor and organs at risk (OARs). The aim of this study is to compare dose calculated by the PRIMO Monte Carlo code and Eclipse TPS in radiotherapy of brain cancer patients. MATERIALS AND METHODS: PRIMO simulation code was used to simulate a Varian Clinac 600C linac. The simulations were validated for the linac by comparison of the simulation and measured results. In the case of brain cancer patients, the dosimetric parameters obtained by the PRIMO code were compared with those calculated by Eclipse TPS. Gamma function analysis with 3%, 3 mm criteria was utilized to compare the dose distributions. The evaluations were based on the dosimetric parameters for the planning target volume (PTV) and OAR including D(min), D(mean,) and D(max), homogeneity index (HI), and conformity index (CI). RESULTS: The gamma function analysis showed a 98% agreement between the results obtained by the PRIMO code and measurement for the percent depth dose (PDD) and dose profiles. The corresponding value in comparing the dosimetric parameters from PRIMO code and Eclipse TPS for the brain patients was 94%, on average. The results of the PRIMO simulation were in good agreement with the measured data and Eclipse TPS calculations. CONCLUSIONS: Based on the results of this study, the PRIMO code can be utilized to simulate a medical linac with good accuracy and to evaluate the accuracy of treatment plans for patients with brain cancer. Via Medica 2022-10-31 /pmc/articles/PMC9746651/ /pubmed/36523800 http://dx.doi.org/10.5603/RPOR.a2022.0091 Text en © 2022 Greater Poland Cancer Centre https://creativecommons.org/licenses/by-nc-nd/4.0/This article is available in open access under Creative Common Attribution-Non-Commercial-No Derivatives 4.0 International (CC BY-NC-ND 4.0) license, allowing to download articles and share them with others as long as they credit the authors and the publisher, but without permission to change them in any way or use them commercially
spellingShingle Research Paper
Altuwayrish, Ali
Ghorbani, Mahdi
Bakhshandeh, Mohsen
Roozmand, Zahra
Hoseini-Ghahfarokhi, Mojtaba
Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
title Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
title_full Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
title_fullStr Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
title_full_unstemmed Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
title_short Comparison of PRIMO Monte Carlo code and Eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
title_sort comparison of primo monte carlo code and eclipse treatment planning system in calculation of dosimetric parameters in brain cancer radiotherapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9746651/
https://www.ncbi.nlm.nih.gov/pubmed/36523800
http://dx.doi.org/10.5603/RPOR.a2022.0091
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