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DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams

BACKGROUND: The current study aims to investigate the DNA strand breaks based on the Monte Carlo simulation within and around the Lipiodol with flattening filter (FF) and flattening filter-free (FFF) photon beams. MATERIALS AND METHODS: The dose-mean lineal energy (y(D)) and DNA single- and double s...

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Autores principales: Kawahara, Daisuke, Saito, Akito, Nakano, Hisashi, Nagata, Yasushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Via Medica 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9518785/
https://www.ncbi.nlm.nih.gov/pubmed/36186706
http://dx.doi.org/10.5603/RPOR.a2022.0067
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author Kawahara, Daisuke
Saito, Akito
Nakano, Hisashi
Nagata, Yasushi
author_facet Kawahara, Daisuke
Saito, Akito
Nakano, Hisashi
Nagata, Yasushi
author_sort Kawahara, Daisuke
collection PubMed
description BACKGROUND: The current study aims to investigate the DNA strand breaks based on the Monte Carlo simulation within and around the Lipiodol with flattening filter (FF) and flattening filter-free (FFF) photon beams. MATERIALS AND METHODS: The dose-mean lineal energy (y(D)) and DNA single- and double strand breaks (DSB/SSB) based on spatial patterns of inelastic interactions were calculated using the Monte Carlo code: particle and heavy ion transport system (PHITS). The ratios of dose using standard radiation (200 kVX) to the dose of test radiation (FF and FFF of 6 MV X-ray (6MVX) and 10 MVX beams) to produce the same biological effects was defined as RBE(DSB). The RBE(DSB) within the Lipiodol and in the build-up and build-down regions was evaluated. RESULTS: The RBE(DSB) values with the Lipiodol was larger than that without the Lipiodol at the depth of 4.9 cm by 4.2% and 2.5% for 6 MVX FFF and FF beams, and 3.3% and 2.5% for 10 MVX FFF and FF beams. The RBE(DSB) values with the Lipiodol was larger than that without the Lipiodol at the depth of 6.5 cm by 2.9% and 2.4% for 6 MVX FFF and FF beams, and 1.9% and 1.4% for 10 MVX FFF and FF beams. In the build-down region at the depth of 8.1 cm, the RBE(DSB) values with the Lipiodol was smaller than that without the Lipiodol by 4.2% and 2.9% for 6 MVX FFF and FF beams, and 1.4% and 0.1% for 10 MVX FFF and FF beams. CONCLUSIONS: The current study simulated the DNA strand break except for the physical dose difference. The lower and FFF beam occurred the higher biological effect.
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spelling pubmed-95187852022-09-29 DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams Kawahara, Daisuke Saito, Akito Nakano, Hisashi Nagata, Yasushi Rep Pract Oncol Radiother Research Paper BACKGROUND: The current study aims to investigate the DNA strand breaks based on the Monte Carlo simulation within and around the Lipiodol with flattening filter (FF) and flattening filter-free (FFF) photon beams. MATERIALS AND METHODS: The dose-mean lineal energy (y(D)) and DNA single- and double strand breaks (DSB/SSB) based on spatial patterns of inelastic interactions were calculated using the Monte Carlo code: particle and heavy ion transport system (PHITS). The ratios of dose using standard radiation (200 kVX) to the dose of test radiation (FF and FFF of 6 MV X-ray (6MVX) and 10 MVX beams) to produce the same biological effects was defined as RBE(DSB). The RBE(DSB) within the Lipiodol and in the build-up and build-down regions was evaluated. RESULTS: The RBE(DSB) values with the Lipiodol was larger than that without the Lipiodol at the depth of 4.9 cm by 4.2% and 2.5% for 6 MVX FFF and FF beams, and 3.3% and 2.5% for 10 MVX FFF and FF beams. The RBE(DSB) values with the Lipiodol was larger than that without the Lipiodol at the depth of 6.5 cm by 2.9% and 2.4% for 6 MVX FFF and FF beams, and 1.9% and 1.4% for 10 MVX FFF and FF beams. In the build-down region at the depth of 8.1 cm, the RBE(DSB) values with the Lipiodol was smaller than that without the Lipiodol by 4.2% and 2.9% for 6 MVX FFF and FF beams, and 1.4% and 0.1% for 10 MVX FFF and FF beams. CONCLUSIONS: The current study simulated the DNA strand break except for the physical dose difference. The lower and FFF beam occurred the higher biological effect. Via Medica 2022-07-29 /pmc/articles/PMC9518785/ /pubmed/36186706 http://dx.doi.org/10.5603/RPOR.a2022.0067 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
Kawahara, Daisuke
Saito, Akito
Nakano, Hisashi
Nagata, Yasushi
DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams
title DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams
title_full DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams
title_fullStr DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams
title_full_unstemmed DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams
title_short DNA strand breaks based on Monte Carlo simulation in and around the Lipiodol with flattening filter and flattening filter-free photon beams
title_sort dna strand breaks based on monte carlo simulation in and around the lipiodol with flattening filter and flattening filter-free photon beams
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9518785/
https://www.ncbi.nlm.nih.gov/pubmed/36186706
http://dx.doi.org/10.5603/RPOR.a2022.0067
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