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Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience

The aim of this study was to report a single‐institution experience and commissioning data for Elekta VersaHD linear accelerators (LINACs) for photon beams in the Eclipse treatment planning system (TPS). Two VersaHD LINACs equipped with 160‐leaf collimators were commissioned. For each energy, the pe...

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Autores principales: Zhang, You, Le, Anh H., Tian, Zhen, Iqbal, Zohaib, Chiu, Tsuicheng, Gu, Xuejun, Pugachev, Andrei, Reynolds, Robert, Park, Yang K., Lin, Mu‐Han, Stojadinovic, Strahinja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806469/
https://www.ncbi.nlm.nih.gov/pubmed/31471950
http://dx.doi.org/10.1002/acm2.12709
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author Zhang, You
Le, Anh H.
Tian, Zhen
Iqbal, Zohaib
Chiu, Tsuicheng
Gu, Xuejun
Pugachev, Andrei
Reynolds, Robert
Park, Yang K.
Lin, Mu‐Han
Stojadinovic, Strahinja
author_facet Zhang, You
Le, Anh H.
Tian, Zhen
Iqbal, Zohaib
Chiu, Tsuicheng
Gu, Xuejun
Pugachev, Andrei
Reynolds, Robert
Park, Yang K.
Lin, Mu‐Han
Stojadinovic, Strahinja
author_sort Zhang, You
collection PubMed
description The aim of this study was to report a single‐institution experience and commissioning data for Elekta VersaHD linear accelerators (LINACs) for photon beams in the Eclipse treatment planning system (TPS). Two VersaHD LINACs equipped with 160‐leaf collimators were commissioned. For each energy, the percent‐depth‐dose (PDD) curves, beam profiles, output factors, leaf transmission factors and dosimetric leaf gaps (DLGs) were acquired in accordance with the AAPM task group reports No. 45 and No. 106 and the vendor‐supplied documents. The measured data were imported into Eclipse TPS to build a VersaHD beam model. The model was validated by creating treatment plans spanning over the full‐spectrum of treatment sites and techniques used in our clinic. The quality assurance measurements were performed using MatriXX, ionization chamber, and radiochromic film. The DLG values were iteratively adjusted to optimize the agreement between planned and measured doses. Mobius, an independent LINAC logfile‐based quality assurance tool, was also commissioned both for routine intensity‐modulated radiation therapy (IMRT) QA and as a secondary check for the Eclipse VersaHD model. The Eclipse‐generated VersaHD model was in excellent agreement with the measured PDD curves and beam profiles. The measured leaf transmission factors were less than 0.5% for all energies. The model validation study yielded absolute point dose agreement between ionization chamber measurements and Eclipse within ±4% for all cases. The comparison between Mobius and Eclipse, and between Mobius and ionization chamber measurements lead to absolute point dose agreement within ±5%. The corresponding 3D dose distributions evaluated with 3%global/2mm gamma criteria resulted in larger than 90% passing rates for all plans. The Eclipse TPS can model VersaHD LINACs with clinically acceptable accuracy. The model validation study and comparisons with Mobius demonstrated that the modeling of VersaHD in Eclipse necessitates further improvement to provide dosimetric accuracy on par with Varian LINACs.
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spelling pubmed-68064692019-10-28 Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience Zhang, You Le, Anh H. Tian, Zhen Iqbal, Zohaib Chiu, Tsuicheng Gu, Xuejun Pugachev, Andrei Reynolds, Robert Park, Yang K. Lin, Mu‐Han Stojadinovic, Strahinja J Appl Clin Med Phys Radiation Oncology Physics The aim of this study was to report a single‐institution experience and commissioning data for Elekta VersaHD linear accelerators (LINACs) for photon beams in the Eclipse treatment planning system (TPS). Two VersaHD LINACs equipped with 160‐leaf collimators were commissioned. For each energy, the percent‐depth‐dose (PDD) curves, beam profiles, output factors, leaf transmission factors and dosimetric leaf gaps (DLGs) were acquired in accordance with the AAPM task group reports No. 45 and No. 106 and the vendor‐supplied documents. The measured data were imported into Eclipse TPS to build a VersaHD beam model. The model was validated by creating treatment plans spanning over the full‐spectrum of treatment sites and techniques used in our clinic. The quality assurance measurements were performed using MatriXX, ionization chamber, and radiochromic film. The DLG values were iteratively adjusted to optimize the agreement between planned and measured doses. Mobius, an independent LINAC logfile‐based quality assurance tool, was also commissioned both for routine intensity‐modulated radiation therapy (IMRT) QA and as a secondary check for the Eclipse VersaHD model. The Eclipse‐generated VersaHD model was in excellent agreement with the measured PDD curves and beam profiles. The measured leaf transmission factors were less than 0.5% for all energies. The model validation study yielded absolute point dose agreement between ionization chamber measurements and Eclipse within ±4% for all cases. The comparison between Mobius and Eclipse, and between Mobius and ionization chamber measurements lead to absolute point dose agreement within ±5%. The corresponding 3D dose distributions evaluated with 3%global/2mm gamma criteria resulted in larger than 90% passing rates for all plans. The Eclipse TPS can model VersaHD LINACs with clinically acceptable accuracy. The model validation study and comparisons with Mobius demonstrated that the modeling of VersaHD in Eclipse necessitates further improvement to provide dosimetric accuracy on par with Varian LINACs. John Wiley and Sons Inc. 2019-08-30 /pmc/articles/PMC6806469/ /pubmed/31471950 http://dx.doi.org/10.1002/acm2.12709 Text en © 2019 The Authors. Journal of Applied Clinical Medical Physics published by Wiley Periodicals, Inc. on behalf of American Association of Physicists in Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Radiation Oncology Physics
Zhang, You
Le, Anh H.
Tian, Zhen
Iqbal, Zohaib
Chiu, Tsuicheng
Gu, Xuejun
Pugachev, Andrei
Reynolds, Robert
Park, Yang K.
Lin, Mu‐Han
Stojadinovic, Strahinja
Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience
title Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience
title_full Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience
title_fullStr Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience
title_full_unstemmed Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience
title_short Modeling Elekta VersaHD using the Varian Eclipse treatment planning system for photon beams: A single‐institution experience
title_sort modeling elekta versahd using the varian eclipse treatment planning system for photon beams: a single‐institution experience
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806469/
https://www.ncbi.nlm.nih.gov/pubmed/31471950
http://dx.doi.org/10.1002/acm2.12709
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