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A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system

A comprehensive quality assurance (QA) device cum program was developed for the commissioning and routine testing of the 6D IGRT systems. In this article, both the new QA system and the BrainLAB IGRT system which was added onto a Varian Clinac were evaluated. A novel compound 6D‐offset simulating ph...

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Autores principales: Ngar, Dennis Yuen‐Kan, Cheung, Michael Lok‐Man, Kam, Michael Koon‐Ming, Poon, Wai‐Sang, Chan, Anthony Tak‐Cheung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5714637/
https://www.ncbi.nlm.nih.gov/pubmed/24257294
http://dx.doi.org/10.1120/jacmp.v14i6.4297
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author Ngar, Dennis Yuen‐Kan
Cheung, Michael Lok‐Man
Kam, Michael Koon‐Ming
Poon, Wai‐Sang
Chan, Anthony Tak‐Cheung
author_facet Ngar, Dennis Yuen‐Kan
Cheung, Michael Lok‐Man
Kam, Michael Koon‐Ming
Poon, Wai‐Sang
Chan, Anthony Tak‐Cheung
author_sort Ngar, Dennis Yuen‐Kan
collection PubMed
description A comprehensive quality assurance (QA) device cum program was developed for the commissioning and routine testing of the 6D IGRT systems. In this article, both the new QA system and the BrainLAB IGRT system which was added onto a Varian Clinac were evaluated. A novel compound 6D‐offset simulating phantom was designed and fabricated in the Prince of Wales Hospital (PWH), Hong Kong. The QA program generated random compound 6D‐offset values. The 6D phantom was simply set up and shifted accordingly. The BrainLAB ExacTrac X‐ray IGRT system detected the offsets and then corrected the phantom position automatically through the robotic couch. Routine QA works facilitated data analyses of the detection errors, the correction errors, and the correlations. Fifty sets of data acquired in 2011 in PWH were thoroughly analyzed. The 6D component detection errors and correction errors of the IGRT system were all within [Formula: see text] and [Formula: see text] individually. Translational and rotational scalar resultant errors were found to be [Formula: see text] , respectively. Most individual component errors were shown to be independent of their original offset values. The system characteristics were locally established. The BrainLAB 6D IGRT system added onto a regular linac is sufficiently precise for stereotactic RT This new QA methodology is competent to assure the IGRT system overall integrity. Annual grand analyses are recommended to check local system consistency and for external cross‐comparison. The target expansion policy of 1.5 mm 3D margin from CTV to PTV is confirmed for this IGRT system currently in PWH. PACS numbers: 87.53.Ly, 87.55.Gh, 87.55.Qr, 87.56.Fc
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spelling pubmed-57146372018-04-02 A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system Ngar, Dennis Yuen‐Kan Cheung, Michael Lok‐Man Kam, Michael Koon‐Ming Poon, Wai‐Sang Chan, Anthony Tak‐Cheung J Appl Clin Med Phys Radiation Oncology Physics A comprehensive quality assurance (QA) device cum program was developed for the commissioning and routine testing of the 6D IGRT systems. In this article, both the new QA system and the BrainLAB IGRT system which was added onto a Varian Clinac were evaluated. A novel compound 6D‐offset simulating phantom was designed and fabricated in the Prince of Wales Hospital (PWH), Hong Kong. The QA program generated random compound 6D‐offset values. The 6D phantom was simply set up and shifted accordingly. The BrainLAB ExacTrac X‐ray IGRT system detected the offsets and then corrected the phantom position automatically through the robotic couch. Routine QA works facilitated data analyses of the detection errors, the correction errors, and the correlations. Fifty sets of data acquired in 2011 in PWH were thoroughly analyzed. The 6D component detection errors and correction errors of the IGRT system were all within [Formula: see text] and [Formula: see text] individually. Translational and rotational scalar resultant errors were found to be [Formula: see text] , respectively. Most individual component errors were shown to be independent of their original offset values. The system characteristics were locally established. The BrainLAB 6D IGRT system added onto a regular linac is sufficiently precise for stereotactic RT This new QA methodology is competent to assure the IGRT system overall integrity. Annual grand analyses are recommended to check local system consistency and for external cross‐comparison. The target expansion policy of 1.5 mm 3D margin from CTV to PTV is confirmed for this IGRT system currently in PWH. PACS numbers: 87.53.Ly, 87.55.Gh, 87.55.Qr, 87.56.Fc John Wiley and Sons Inc. 2014-11-04 /pmc/articles/PMC5714637/ /pubmed/24257294 http://dx.doi.org/10.1120/jacmp.v14i6.4297 Text en © 2013 The Authors. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Radiation Oncology Physics
Ngar, Dennis Yuen‐Kan
Cheung, Michael Lok‐Man
Kam, Michael Koon‐Ming
Poon, Wai‐Sang
Chan, Anthony Tak‐Cheung
A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
title A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
title_full A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
title_fullStr A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
title_full_unstemmed A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
title_short A novel compound 6D‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
title_sort novel compound 6d‐offset simulating phantom and quality assurance program for stereotactic image‐guided radiation therapy system
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5714637/
https://www.ncbi.nlm.nih.gov/pubmed/24257294
http://dx.doi.org/10.1120/jacmp.v14i6.4297
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