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Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs

PURPOSE: The integration of auto‐segmentation and automated treatment planning methods on a fast‐rotating O‐ring linac may improve the time efficiency of online adaptive radiotherapy workflows. This study investigates whether automated treatment planning of prostate SBRT with focal boosting on the O...

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Autores principales: De Roover, Robin, Crijns, Wouter, Poels, Kenneth, Dewit, Bertrand, Draulans, Cédric, Haustermans, Karin, Depuydt, Tom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425873/
https://www.ncbi.nlm.nih.gov/pubmed/34318996
http://dx.doi.org/10.1002/acm2.13345
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author De Roover, Robin
Crijns, Wouter
Poels, Kenneth
Dewit, Bertrand
Draulans, Cédric
Haustermans, Karin
Depuydt, Tom
author_facet De Roover, Robin
Crijns, Wouter
Poels, Kenneth
Dewit, Bertrand
Draulans, Cédric
Haustermans, Karin
Depuydt, Tom
author_sort De Roover, Robin
collection PubMed
description PURPOSE: The integration of auto‐segmentation and automated treatment planning methods on a fast‐rotating O‐ring linac may improve the time efficiency of online adaptive radiotherapy workflows. This study investigates whether automated treatment planning of prostate SBRT with focal boosting on the O‐ring linac could generate plans that are of similar quality as those obtained through manual planning on clinical C‐arm linacs. METHODS: For 20 men with prostate cancer, reference treatment plans were generated on a TrueBeam STx C‐arm linac with HD120 MLC and a TrueBeam C‐arm linac with Millennium 120 MLC using 6 MV flattened dual arc VMAT. Manual planning on the Halcyon fast‐rotating O‐ring linac was performed using 6 MV FFF dual arc VMAT (HA2‐DL10) and triple arc VMAT (HA3‐DL10) to investigate the performance of the dual‐layer MLC system. Automated planning was performed for triple arc VMAT on the Halcyon linac (ET3‐DL10) using the automated planning algorithms of Ethos Treatment Planning. The prescribed dose was 35 Gy to the prostate and 30 Gy to the seminal vesicles in five fractions. The iso‐toxic focal boost to the intraprostatic tumor nodule(s) was aimed to receive up to 50 Gy. Plan deliverability was verified using portal image dosimetry measurements. RESULTS: Compared to the C‐arm linacs, ET3‐DL10 shows increased seminal vesicles PTV coverage (D(99%)) and reduced high‐dose spillage to the bladder (V(37Gy)) and urethra (D(0.035cc)) but this came at the cost of increased high‐dose spillage to the rectum (V(38Gy)) and a higher intermediate dose spillage (D2cm). No statistically significant differences were found when benchmarking HA2‐DL10 and HA3‐DL10 with the C‐arm linacs. All plans passed the patient‐specific QA tolerance limit. CONCLUSIONS: Automated planning of prostate SBRT with focal boosting on the fast‐rotating O‐ring linac is feasible and achieves similar plan quality as those obtained on clinical C‐arm linacs using manual planning.
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spelling pubmed-84258732021-09-13 Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs De Roover, Robin Crijns, Wouter Poels, Kenneth Dewit, Bertrand Draulans, Cédric Haustermans, Karin Depuydt, Tom J Appl Clin Med Phys Radiation Oncology Physics PURPOSE: The integration of auto‐segmentation and automated treatment planning methods on a fast‐rotating O‐ring linac may improve the time efficiency of online adaptive radiotherapy workflows. This study investigates whether automated treatment planning of prostate SBRT with focal boosting on the O‐ring linac could generate plans that are of similar quality as those obtained through manual planning on clinical C‐arm linacs. METHODS: For 20 men with prostate cancer, reference treatment plans were generated on a TrueBeam STx C‐arm linac with HD120 MLC and a TrueBeam C‐arm linac with Millennium 120 MLC using 6 MV flattened dual arc VMAT. Manual planning on the Halcyon fast‐rotating O‐ring linac was performed using 6 MV FFF dual arc VMAT (HA2‐DL10) and triple arc VMAT (HA3‐DL10) to investigate the performance of the dual‐layer MLC system. Automated planning was performed for triple arc VMAT on the Halcyon linac (ET3‐DL10) using the automated planning algorithms of Ethos Treatment Planning. The prescribed dose was 35 Gy to the prostate and 30 Gy to the seminal vesicles in five fractions. The iso‐toxic focal boost to the intraprostatic tumor nodule(s) was aimed to receive up to 50 Gy. Plan deliverability was verified using portal image dosimetry measurements. RESULTS: Compared to the C‐arm linacs, ET3‐DL10 shows increased seminal vesicles PTV coverage (D(99%)) and reduced high‐dose spillage to the bladder (V(37Gy)) and urethra (D(0.035cc)) but this came at the cost of increased high‐dose spillage to the rectum (V(38Gy)) and a higher intermediate dose spillage (D2cm). No statistically significant differences were found when benchmarking HA2‐DL10 and HA3‐DL10 with the C‐arm linacs. All plans passed the patient‐specific QA tolerance limit. CONCLUSIONS: Automated planning of prostate SBRT with focal boosting on the fast‐rotating O‐ring linac is feasible and achieves similar plan quality as those obtained on clinical C‐arm linacs using manual planning. John Wiley and Sons Inc. 2021-07-28 /pmc/articles/PMC8425873/ /pubmed/34318996 http://dx.doi.org/10.1002/acm2.13345 Text en © 2021 The Authors. Journal of Applied Clinical Medical Physics published by Wiley Periodicals LLC on behalf of American Association of Physicists in Medicine https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://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
De Roover, Robin
Crijns, Wouter
Poels, Kenneth
Dewit, Bertrand
Draulans, Cédric
Haustermans, Karin
Depuydt, Tom
Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs
title Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs
title_full Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs
title_fullStr Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs
title_full_unstemmed Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs
title_short Automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating O‐ring linac: Plan quality comparison with C‐arm linacs
title_sort automated treatment planning of prostate stereotactic body radiotherapy with focal boosting on a fast‐rotating o‐ring linac: plan quality comparison with c‐arm linacs
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425873/
https://www.ncbi.nlm.nih.gov/pubmed/34318996
http://dx.doi.org/10.1002/acm2.13345
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