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Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media

INTRODUCTION: Advanced, Monte Carlo (MC) based dose calculation algorithms, determine absorbed dose as dose to medium-in-medium (D(m,m)) or dose to water-in-medium (D(w,m)). Some earlier studies identified the differences in the absorbed doses related to the calculation mode, especially in the bone...

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Autores principales: Radojcic, Djeni Smilovic, Casar, Bozidar, Rajlic, David, Kolacio, Manda Svabic, Mendez, Ignasi, Obajdin, Nevena, Debeljuh, Dea Dundara, Jurkovic, Slaven
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sciendo 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7585341/
https://www.ncbi.nlm.nih.gov/pubmed/32936784
http://dx.doi.org/10.2478/raon-2020-0051
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author Radojcic, Djeni Smilovic
Casar, Bozidar
Rajlic, David
Kolacio, Manda Svabic
Mendez, Ignasi
Obajdin, Nevena
Debeljuh, Dea Dundara
Jurkovic, Slaven
author_facet Radojcic, Djeni Smilovic
Casar, Bozidar
Rajlic, David
Kolacio, Manda Svabic
Mendez, Ignasi
Obajdin, Nevena
Debeljuh, Dea Dundara
Jurkovic, Slaven
author_sort Radojcic, Djeni Smilovic
collection PubMed
description INTRODUCTION: Advanced, Monte Carlo (MC) based dose calculation algorithms, determine absorbed dose as dose to medium-in-medium (D(m,m)) or dose to water-in-medium (D(w,m)). Some earlier studies identified the differences in the absorbed doses related to the calculation mode, especially in the bone density equivalent (BDE) media. Since the calculation algorithms built in the treatment planning systems (TPS) should be dosimetrically verified before their use, we analyzed dose differences between two calculation modes for the Elekta Monaco TPS. We compared them with experimentally determined values, aiming to define a supplement to the existing TPS verification methodology. MATERIALS AND METHODS: In our study, we used a 6 MV photon beam from a linear accelerator. To evaluate the accuracy of the TPS calculation approaches, measurements with a Farmer type chamber in a semi-anthropomorphic phantom were compared to those obtained by two calculation options. The comparison was made for three parts of the phantom having different densities, with a focus on the BDE part. RESULTS: Measured and calculated doses were in agreement for water and lung equivalent density materials, regardless of the calculation mode. However, in the BDE part of the phantom, mean dose differences between the calculation options ranged from 5.7 to 8.3%, depending on the method used. In the BDE part of the phantom, neither of the two calculation options were consistent with experimentally determined absorbed doses. CONCLUSIONS: Based on our findings, we proposed a supplement to the current methodology for the verification of commercial MC based TPS by performing additional measurements in BDE material.
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spelling pubmed-75853412020-12-01 Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media Radojcic, Djeni Smilovic Casar, Bozidar Rajlic, David Kolacio, Manda Svabic Mendez, Ignasi Obajdin, Nevena Debeljuh, Dea Dundara Jurkovic, Slaven Radiol Oncol Research Article INTRODUCTION: Advanced, Monte Carlo (MC) based dose calculation algorithms, determine absorbed dose as dose to medium-in-medium (D(m,m)) or dose to water-in-medium (D(w,m)). Some earlier studies identified the differences in the absorbed doses related to the calculation mode, especially in the bone density equivalent (BDE) media. Since the calculation algorithms built in the treatment planning systems (TPS) should be dosimetrically verified before their use, we analyzed dose differences between two calculation modes for the Elekta Monaco TPS. We compared them with experimentally determined values, aiming to define a supplement to the existing TPS verification methodology. MATERIALS AND METHODS: In our study, we used a 6 MV photon beam from a linear accelerator. To evaluate the accuracy of the TPS calculation approaches, measurements with a Farmer type chamber in a semi-anthropomorphic phantom were compared to those obtained by two calculation options. The comparison was made for three parts of the phantom having different densities, with a focus on the BDE part. RESULTS: Measured and calculated doses were in agreement for water and lung equivalent density materials, regardless of the calculation mode. However, in the BDE part of the phantom, mean dose differences between the calculation options ranged from 5.7 to 8.3%, depending on the method used. In the BDE part of the phantom, neither of the two calculation options were consistent with experimentally determined absorbed doses. CONCLUSIONS: Based on our findings, we proposed a supplement to the current methodology for the verification of commercial MC based TPS by performing additional measurements in BDE material. Sciendo 2020-09-16 /pmc/articles/PMC7585341/ /pubmed/32936784 http://dx.doi.org/10.2478/raon-2020-0051 Text en © 2020 Djeni Smilovic Radojcic, Bozidar Casar, David Rajlic, Manda Svabic Kolacio, Ignasi Mendez, Nevena Obajdin, Dea Dundara Debeljuh, Slaven Jurkovic, published by Sciendo http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
spellingShingle Research Article
Radojcic, Djeni Smilovic
Casar, Bozidar
Rajlic, David
Kolacio, Manda Svabic
Mendez, Ignasi
Obajdin, Nevena
Debeljuh, Dea Dundara
Jurkovic, Slaven
Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media
title Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media
title_full Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media
title_fullStr Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media
title_full_unstemmed Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media
title_short Experimental Validation of Monte Carlo Based Treatment Planning System in Bone Density Equivalent Media
title_sort experimental validation of monte carlo based treatment planning system in bone density equivalent media
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7585341/
https://www.ncbi.nlm.nih.gov/pubmed/32936784
http://dx.doi.org/10.2478/raon-2020-0051
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