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Parameter based 4D dose calculations for proton therapy

Background and purpose Retrospective log file-based analysis provides the actual dose delivered based on the patient’s breathing and the daily beam-delivery dynamics. To predict the motion sensitivity of the treatment plan on a patient-specific basis before treatment start a prospective tool is requ...

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Autores principales: Lebbink, Franciska, Stocchiero, Silvia, Fossati, Piero, Engwall, Erik, Georg, Dietmar, Stock, Markus, Knäusl, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10374597/
https://www.ncbi.nlm.nih.gov/pubmed/37520640
http://dx.doi.org/10.1016/j.phro.2023.100473
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author Lebbink, Franciska
Stocchiero, Silvia
Fossati, Piero
Engwall, Erik
Georg, Dietmar
Stock, Markus
Knäusl, Barbara
author_facet Lebbink, Franciska
Stocchiero, Silvia
Fossati, Piero
Engwall, Erik
Georg, Dietmar
Stock, Markus
Knäusl, Barbara
author_sort Lebbink, Franciska
collection PubMed
description Background and purpose Retrospective log file-based analysis provides the actual dose delivered based on the patient’s breathing and the daily beam-delivery dynamics. To predict the motion sensitivity of the treatment plan on a patient-specific basis before treatment start a prospective tool is required. Such a parameter-based tool has been investigated with the aim to be used in clinical routine. Materials and Methods 4D dose calculations (4DDC) were performed for seven cancer patients with small breathing motion treated with scanned pulsed proton beams. Validation of the parameter-based 4DDC (p-4DDC) method was performed with an anthropomorphic phantom and patient data employing measurements and a log file-based 4DDC tool. The dose volume histogram parameters ([Formula: see text]) were investigated for the target and the organs at risk, compared to static and the file-based approach. Results The difference between the measured and the p-4DDC dose was within the deviation of the measurements. The maximum deviation was 0.4Gy. For the planning target volume [Formula: see text] varied up to 15% compared to the static scenario, while the results from the log file and p-4DDC agreed within 2%. For the liver patients, [Formula: see text] deviated up to 35% compared to static and 10% comparing the two 4DDC tools, while for the pancreas patients the [Formula: see text] varied up to 45% and 11%, respectively. Conclusion The results showed that p-4DDC could be used prospectively. The next step will be the clinical implementation of the p-4DDC tool, which can support a decision to either adapt the treatment plan or apply motion mitigation strategies.
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spelling pubmed-103745972023-07-29 Parameter based 4D dose calculations for proton therapy Lebbink, Franciska Stocchiero, Silvia Fossati, Piero Engwall, Erik Georg, Dietmar Stock, Markus Knäusl, Barbara Phys Imaging Radiat Oncol Original Research Article Background and purpose Retrospective log file-based analysis provides the actual dose delivered based on the patient’s breathing and the daily beam-delivery dynamics. To predict the motion sensitivity of the treatment plan on a patient-specific basis before treatment start a prospective tool is required. Such a parameter-based tool has been investigated with the aim to be used in clinical routine. Materials and Methods 4D dose calculations (4DDC) were performed for seven cancer patients with small breathing motion treated with scanned pulsed proton beams. Validation of the parameter-based 4DDC (p-4DDC) method was performed with an anthropomorphic phantom and patient data employing measurements and a log file-based 4DDC tool. The dose volume histogram parameters ([Formula: see text]) were investigated for the target and the organs at risk, compared to static and the file-based approach. Results The difference between the measured and the p-4DDC dose was within the deviation of the measurements. The maximum deviation was 0.4Gy. For the planning target volume [Formula: see text] varied up to 15% compared to the static scenario, while the results from the log file and p-4DDC agreed within 2%. For the liver patients, [Formula: see text] deviated up to 35% compared to static and 10% comparing the two 4DDC tools, while for the pancreas patients the [Formula: see text] varied up to 45% and 11%, respectively. Conclusion The results showed that p-4DDC could be used prospectively. The next step will be the clinical implementation of the p-4DDC tool, which can support a decision to either adapt the treatment plan or apply motion mitigation strategies. Elsevier 2023-07-20 /pmc/articles/PMC10374597/ /pubmed/37520640 http://dx.doi.org/10.1016/j.phro.2023.100473 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research Article
Lebbink, Franciska
Stocchiero, Silvia
Fossati, Piero
Engwall, Erik
Georg, Dietmar
Stock, Markus
Knäusl, Barbara
Parameter based 4D dose calculations for proton therapy
title Parameter based 4D dose calculations for proton therapy
title_full Parameter based 4D dose calculations for proton therapy
title_fullStr Parameter based 4D dose calculations for proton therapy
title_full_unstemmed Parameter based 4D dose calculations for proton therapy
title_short Parameter based 4D dose calculations for proton therapy
title_sort parameter based 4d dose calculations for proton therapy
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10374597/
https://www.ncbi.nlm.nih.gov/pubmed/37520640
http://dx.doi.org/10.1016/j.phro.2023.100473
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