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Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator

The Agility multileaf collimator (Elekta AB, Stockholm, Sweden) has 160 leaves of projected width 0.5 cm at the isocenter, with maximum leaf speed [Formula: see text]. These characteristics promise to facilitate fast and accurate delivery of radiotherapy, particularly volumetric‐modulated arc therap...

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Autores principales: Bedford, James L., Thomas, Michael D. R., Smyth, Gregory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5714360/
https://www.ncbi.nlm.nih.gov/pubmed/23470941
http://dx.doi.org/10.1120/jacmp.v14i2.4136
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author Bedford, James L.
Thomas, Michael D. R.
Smyth, Gregory
author_facet Bedford, James L.
Thomas, Michael D. R.
Smyth, Gregory
author_sort Bedford, James L.
collection PubMed
description The Agility multileaf collimator (Elekta AB, Stockholm, Sweden) has 160 leaves of projected width 0.5 cm at the isocenter, with maximum leaf speed [Formula: see text]. These characteristics promise to facilitate fast and accurate delivery of radiotherapy, particularly volumetric‐modulated arc therapy (VMAT). The aim of this study is therefore to create a beam model for the [Formula: see text] treatment planning system (Philips Radiation Oncology Systems, Fitchburg, WI), and to use this beam model to explore the performance of the Agility MLC in delivery of VMAT. A 6 MV beam model was created and verified by measuring doses under irregularly shaped fields. VMAT treatment plans for five typical head‐and‐neck patients were created using the beam model and delivered using both binned and continuously variable dose rate (CVDR). Results were compared with those for an MLCi unit without CVDR. The beam model has similar parameters to those of an MLCi model, with interleaf leakage of only 0.2%. The verification of irregular fields shows a mean agreement between measured and planned dose of 1.3% (planned dose higher). The Agility VMAT head‐and‐neck plans show equivalent plan quality and delivery accuracy to those for an MLCi unit, with 95% of verification measurements within 3% and 3 mm of planned dose. Mean delivery time is 133 s with the Agility head and CVDR, 171 s without CVDR, and 282 s with an MLCi unit. [Formula: see text] has therefore been shown to model the Agility MLC accurately, and to provide accurate VMAT treatment plans which can be delivered significantly faster with Agility than with an MLCi. PACS number: 87.55kd, 87.55km, 87.56bd, 87.56jk
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spelling pubmed-57143602018-04-02 Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator Bedford, James L. Thomas, Michael D. R. Smyth, Gregory J Appl Clin Med Phys Radiation Oncology Physics The Agility multileaf collimator (Elekta AB, Stockholm, Sweden) has 160 leaves of projected width 0.5 cm at the isocenter, with maximum leaf speed [Formula: see text]. These characteristics promise to facilitate fast and accurate delivery of radiotherapy, particularly volumetric‐modulated arc therapy (VMAT). The aim of this study is therefore to create a beam model for the [Formula: see text] treatment planning system (Philips Radiation Oncology Systems, Fitchburg, WI), and to use this beam model to explore the performance of the Agility MLC in delivery of VMAT. A 6 MV beam model was created and verified by measuring doses under irregularly shaped fields. VMAT treatment plans for five typical head‐and‐neck patients were created using the beam model and delivered using both binned and continuously variable dose rate (CVDR). Results were compared with those for an MLCi unit without CVDR. The beam model has similar parameters to those of an MLCi model, with interleaf leakage of only 0.2%. The verification of irregular fields shows a mean agreement between measured and planned dose of 1.3% (planned dose higher). The Agility VMAT head‐and‐neck plans show equivalent plan quality and delivery accuracy to those for an MLCi unit, with 95% of verification measurements within 3% and 3 mm of planned dose. Mean delivery time is 133 s with the Agility head and CVDR, 171 s without CVDR, and 282 s with an MLCi unit. [Formula: see text] has therefore been shown to model the Agility MLC accurately, and to provide accurate VMAT treatment plans which can be delivered significantly faster with Agility than with an MLCi. PACS number: 87.55kd, 87.55km, 87.56bd, 87.56jk John Wiley and Sons Inc. 2013-05-06 /pmc/articles/PMC5714360/ /pubmed/23470941 http://dx.doi.org/10.1120/jacmp.v14i2.4136 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
Bedford, James L.
Thomas, Michael D. R.
Smyth, Gregory
Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator
title Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator
title_full Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator
title_fullStr Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator
title_full_unstemmed Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator
title_short Beam modeling and VMAT performance with the Agility 160‐leaf multileaf collimator
title_sort beam modeling and vmat performance with the agility 160‐leaf multileaf collimator
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5714360/
https://www.ncbi.nlm.nih.gov/pubmed/23470941
http://dx.doi.org/10.1120/jacmp.v14i2.4136
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