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A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy

PURPOSE: Intraoperatively implanted Cesium-131 ((131)Cs) permanent seed brachytherapy is used to deliver highly localized re-irradiation in recurrent head and neck cancers. A single planar implant of uniform air kerma strength (AKS) seeds and 10 mm seed-to-seed spacing is used to deliver the prescri...

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Autores principales: Hubley, Emily, Trager, Michael, Bar-Ad, Voichita, Luginbuhl, Adam, Doyle, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Termedia Publishing House 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6431101/
https://www.ncbi.nlm.nih.gov/pubmed/30911315
http://dx.doi.org/10.5114/jcb.2019.82716
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author Hubley, Emily
Trager, Michael
Bar-Ad, Voichita
Luginbuhl, Adam
Doyle, Laura
author_facet Hubley, Emily
Trager, Michael
Bar-Ad, Voichita
Luginbuhl, Adam
Doyle, Laura
author_sort Hubley, Emily
collection PubMed
description PURPOSE: Intraoperatively implanted Cesium-131 ((131)Cs) permanent seed brachytherapy is used to deliver highly localized re-irradiation in recurrent head and neck cancers. A single planar implant of uniform air kerma strength (AKS) seeds and 10 mm seed-to-seed spacing is used to deliver the prescribed dose to a point 5 mm or 10 mm perpendicular to the center of the implant plane. Nomogram tables to quickly determine the required AKS for rectangular and irregularly shaped implants were created and dosimetrically verified. By eliminating the need for a full treatment planning system plan, nomogram tables allow for fast dose calculation for intraoperative re-planning and for a second check method. MATERIAL AND METHODS: TG-43U1 recommended parameters were used to create a point-source model in MATLAB. The dose delivered to the prescription point from a single 1 U seed at each possible location in the implant plane was calculated. Implant tables were verified using an independent seed model in MIM Symphony LDR™. Implant tables were used to retrospectively determine seed AKS for previous cases: three rectangular and three irregular. RESULTS: For rectangular implants, the percent difference between required seed AKS calculated using MATLAB and MIM was at most 0.6%. For irregular implants, the percent difference between MATLAB and MIM calculations for individual seed locations was within 1.5% with outliers of less than 3.1% at two distal locations (10.6 cm and 8.8 cm), which have minimal dose contribution to the prescription point. The retrospectively determined AKS for patient implants using nomogram tables agreed with previous calculations within 5% for all six cases. CONCLUSIONS: Nomogram tables were created to determine required AKS per seed for planar uniform AKS (131)Cs implants. Comparison with the treatment planning system confirms dosimetric accuracy that is acceptable for use as a second check or for dose calculation in cases of intraoperative re-planning.
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spelling pubmed-64311012019-03-25 A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy Hubley, Emily Trager, Michael Bar-Ad, Voichita Luginbuhl, Adam Doyle, Laura J Contemp Brachytherapy Original Paper PURPOSE: Intraoperatively implanted Cesium-131 ((131)Cs) permanent seed brachytherapy is used to deliver highly localized re-irradiation in recurrent head and neck cancers. A single planar implant of uniform air kerma strength (AKS) seeds and 10 mm seed-to-seed spacing is used to deliver the prescribed dose to a point 5 mm or 10 mm perpendicular to the center of the implant plane. Nomogram tables to quickly determine the required AKS for rectangular and irregularly shaped implants were created and dosimetrically verified. By eliminating the need for a full treatment planning system plan, nomogram tables allow for fast dose calculation for intraoperative re-planning and for a second check method. MATERIAL AND METHODS: TG-43U1 recommended parameters were used to create a point-source model in MATLAB. The dose delivered to the prescription point from a single 1 U seed at each possible location in the implant plane was calculated. Implant tables were verified using an independent seed model in MIM Symphony LDR™. Implant tables were used to retrospectively determine seed AKS for previous cases: three rectangular and three irregular. RESULTS: For rectangular implants, the percent difference between required seed AKS calculated using MATLAB and MIM was at most 0.6%. For irregular implants, the percent difference between MATLAB and MIM calculations for individual seed locations was within 1.5% with outliers of less than 3.1% at two distal locations (10.6 cm and 8.8 cm), which have minimal dose contribution to the prescription point. The retrospectively determined AKS for patient implants using nomogram tables agreed with previous calculations within 5% for all six cases. CONCLUSIONS: Nomogram tables were created to determine required AKS per seed for planar uniform AKS (131)Cs implants. Comparison with the treatment planning system confirms dosimetric accuracy that is acceptable for use as a second check or for dose calculation in cases of intraoperative re-planning. Termedia Publishing House 2019-02-28 2019-02 /pmc/articles/PMC6431101/ /pubmed/30911315 http://dx.doi.org/10.5114/jcb.2019.82716 Text en Copyright: © 2019 Termedia Sp. z o. o. http://creativecommons.org/licenses/by-nc-sa/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) License, allowing third parties to copy and redistribute the material in any medium or format and to remix, transform, and build upon the material, provided the original work is properly cited and states its license.
spellingShingle Original Paper
Hubley, Emily
Trager, Michael
Bar-Ad, Voichita
Luginbuhl, Adam
Doyle, Laura
A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy
title A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy
title_full A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy
title_fullStr A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy
title_full_unstemmed A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy
title_short A nomogram to determine required seed air kerma strength in planar (131)Cesium permanent seed implant brachytherapy
title_sort nomogram to determine required seed air kerma strength in planar (131)cesium permanent seed implant brachytherapy
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6431101/
https://www.ncbi.nlm.nih.gov/pubmed/30911315
http://dx.doi.org/10.5114/jcb.2019.82716
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