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Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions

PURPOSE: To evaluate the performance of eleven Knowledge-Based (KB) models for planning optimization (RapidPlan(tm) (RP), Varian) of Volumetric Modulated Arc Therapy (VMAT) applied to whole breast comprehensive of nodal stations, internal mammary and/or supraclavicular regions. METHODS AND MATERIALS...

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Autores principales: Rago, Maria, Placidi, Lorenzo, Polsoni, Mattia, Rambaldi, Giulia, Cusumano, Davide, Greco, Francesca, Indovina, Luca, Menna, Sebastiano, Placidi, Elisa, Stimato, Gerardina, Teodoli, Stefania, Mattiucci, Gian Carlo, Chiesa, Silvia, Marazzi, Fabio, Masiello, Valeria, Valentini, Vincenzo, De Spirito, Marco, Azario, Luigi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7810311/
https://www.ncbi.nlm.nih.gov/pubmed/33449952
http://dx.doi.org/10.1371/journal.pone.0245305
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author Rago, Maria
Placidi, Lorenzo
Polsoni, Mattia
Rambaldi, Giulia
Cusumano, Davide
Greco, Francesca
Indovina, Luca
Menna, Sebastiano
Placidi, Elisa
Stimato, Gerardina
Teodoli, Stefania
Mattiucci, Gian Carlo
Chiesa, Silvia
Marazzi, Fabio
Masiello, Valeria
Valentini, Vincenzo
De Spirito, Marco
Azario, Luigi
author_facet Rago, Maria
Placidi, Lorenzo
Polsoni, Mattia
Rambaldi, Giulia
Cusumano, Davide
Greco, Francesca
Indovina, Luca
Menna, Sebastiano
Placidi, Elisa
Stimato, Gerardina
Teodoli, Stefania
Mattiucci, Gian Carlo
Chiesa, Silvia
Marazzi, Fabio
Masiello, Valeria
Valentini, Vincenzo
De Spirito, Marco
Azario, Luigi
author_sort Rago, Maria
collection PubMed
description PURPOSE: To evaluate the performance of eleven Knowledge-Based (KB) models for planning optimization (RapidPlan(tm) (RP), Varian) of Volumetric Modulated Arc Therapy (VMAT) applied to whole breast comprehensive of nodal stations, internal mammary and/or supraclavicular regions. METHODS AND MATERIALS: Six RP models have been generated and trained based on 120 VMAT plans data set with different criteria. Two extra-structures were delineated: a PTV for the optimization and a ring structure. Five more models, twins of the previous models, have been created without the need of these structures. RESULTS: All models were successfully validated on an independent cohort of 40 patients, 30 from the same institute that provided the training patients and 10 from an additional institute, with the resulting plans being of equal or better quality compared with the clinical plans. The internal validation shows that the models reduce the heart maximum dose of about 2 Gy, the mean dose of about 1 Gy and the V(20Gy) of 1.5 Gy on average. Model R and L together with model B without optimization structures ensured the best outcomes in the 20% of the values compared to other models. The external validation observed an average improvement of at least 16% for the V(5Gy) of lungs in RP plans. The mean heart dose and for the V(20Gy) for lung IPSI were almost halved. The models reduce the maximum dose for the spinal canal of more than 2 Gy on average CONCLUSIONS: All KB models allow a homogeneous plan quality and some dosimetric gains, as we saw in both internal and external validation. Sub-KB models, developed by splitting right and left breast cases or including only whole breast with locoregional lymph nodes, have shown good performances, comparable but slightly worse than the general model. Finally, models generated without the optimization structures, performed better than the original ones.
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spelling pubmed-78103112021-01-27 Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions Rago, Maria Placidi, Lorenzo Polsoni, Mattia Rambaldi, Giulia Cusumano, Davide Greco, Francesca Indovina, Luca Menna, Sebastiano Placidi, Elisa Stimato, Gerardina Teodoli, Stefania Mattiucci, Gian Carlo Chiesa, Silvia Marazzi, Fabio Masiello, Valeria Valentini, Vincenzo De Spirito, Marco Azario, Luigi PLoS One Research Article PURPOSE: To evaluate the performance of eleven Knowledge-Based (KB) models for planning optimization (RapidPlan(tm) (RP), Varian) of Volumetric Modulated Arc Therapy (VMAT) applied to whole breast comprehensive of nodal stations, internal mammary and/or supraclavicular regions. METHODS AND MATERIALS: Six RP models have been generated and trained based on 120 VMAT plans data set with different criteria. Two extra-structures were delineated: a PTV for the optimization and a ring structure. Five more models, twins of the previous models, have been created without the need of these structures. RESULTS: All models were successfully validated on an independent cohort of 40 patients, 30 from the same institute that provided the training patients and 10 from an additional institute, with the resulting plans being of equal or better quality compared with the clinical plans. The internal validation shows that the models reduce the heart maximum dose of about 2 Gy, the mean dose of about 1 Gy and the V(20Gy) of 1.5 Gy on average. Model R and L together with model B without optimization structures ensured the best outcomes in the 20% of the values compared to other models. The external validation observed an average improvement of at least 16% for the V(5Gy) of lungs in RP plans. The mean heart dose and for the V(20Gy) for lung IPSI were almost halved. The models reduce the maximum dose for the spinal canal of more than 2 Gy on average CONCLUSIONS: All KB models allow a homogeneous plan quality and some dosimetric gains, as we saw in both internal and external validation. Sub-KB models, developed by splitting right and left breast cases or including only whole breast with locoregional lymph nodes, have shown good performances, comparable but slightly worse than the general model. Finally, models generated without the optimization structures, performed better than the original ones. Public Library of Science 2021-01-15 /pmc/articles/PMC7810311/ /pubmed/33449952 http://dx.doi.org/10.1371/journal.pone.0245305 Text en © 2021 Rago et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rago, Maria
Placidi, Lorenzo
Polsoni, Mattia
Rambaldi, Giulia
Cusumano, Davide
Greco, Francesca
Indovina, Luca
Menna, Sebastiano
Placidi, Elisa
Stimato, Gerardina
Teodoli, Stefania
Mattiucci, Gian Carlo
Chiesa, Silvia
Marazzi, Fabio
Masiello, Valeria
Valentini, Vincenzo
De Spirito, Marco
Azario, Luigi
Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions
title Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions
title_full Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions
title_fullStr Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions
title_full_unstemmed Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions
title_short Evaluation of a generalized knowledge-based planning performance for VMAT irradiation of breast and locoregional lymph nodes—Internal mammary and/or supraclavicular regions
title_sort evaluation of a generalized knowledge-based planning performance for vmat irradiation of breast and locoregional lymph nodes—internal mammary and/or supraclavicular regions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7810311/
https://www.ncbi.nlm.nih.gov/pubmed/33449952
http://dx.doi.org/10.1371/journal.pone.0245305
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