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Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer

The primary objective is to evaluate the potential dosimetric gains of performing functional avoidance‐based proton treatment planning using 4DCT derived ventilation imaging. 4DCT data of 31 patients from a prospective functional avoidance clinical trial were evaluated with intensity modulated proto...

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Autores principales: Dougherty, Jingjing M., Castillo, Edward, Castillo, Richard, Faught, Austin M., Pepin, Mark, Park, Sean S., Beltran, Chris J., Guerrero, Thomas, Grills, Inga, Vinogradskiy, Yevgeniy
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/PMC8292710/
https://www.ncbi.nlm.nih.gov/pubmed/34159715
http://dx.doi.org/10.1002/acm2.13323
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author Dougherty, Jingjing M.
Castillo, Edward
Castillo, Richard
Faught, Austin M.
Pepin, Mark
Park, Sean S.
Beltran, Chris J.
Guerrero, Thomas
Grills, Inga
Vinogradskiy, Yevgeniy
author_facet Dougherty, Jingjing M.
Castillo, Edward
Castillo, Richard
Faught, Austin M.
Pepin, Mark
Park, Sean S.
Beltran, Chris J.
Guerrero, Thomas
Grills, Inga
Vinogradskiy, Yevgeniy
author_sort Dougherty, Jingjing M.
collection PubMed
description The primary objective is to evaluate the potential dosimetric gains of performing functional avoidance‐based proton treatment planning using 4DCT derived ventilation imaging. 4DCT data of 31 patients from a prospective functional avoidance clinical trial were evaluated with intensity modulated proton therapy (IMPT) plans and compared with clinical volumetric modulated arc therapy (VMAT) plans. Dosimetric parameters were compared between standard and functional plans with IMPT and VMAT with one‐way analysis of variance and post hoc paired student t‐test. Normal Tissue Complication Probability (NTCP) models were employed to estimate the risk of two toxicity endpoints for healthy lung tissues. Dose degradation due to proton motion interplay effect was evaluated. Functional IMPT plans led to significant dose reduction to functional lung structures when compared with functional VMAT without significant dose increase to Organ at Risk (OAR) structures. When interplay effect is considered, no significant dose degradation was observed for the OARs or the clinical target volume (CTV) volumes for functional IMPT. Using fV20 as the dose metric and Grade 2+ pneumonitis as toxicity endpoint, there is a mean 5.7% reduction in Grade 2+ RP with the functional IMPT and as high as 26% in reduction for individual patient when compared to the standard IMPT planning. Functional IMPT was able to spare healthy lung tissue to avoid excess dose to normal structures while maintaining satisfying target coverage. NTCP calculation also shows that the risk of pulmonary complications can be further reduced with functional based IMPT.
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spelling pubmed-82927102021-07-22 Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer Dougherty, Jingjing M. Castillo, Edward Castillo, Richard Faught, Austin M. Pepin, Mark Park, Sean S. Beltran, Chris J. Guerrero, Thomas Grills, Inga Vinogradskiy, Yevgeniy J Appl Clin Med Phys Radiation Oncology Physics The primary objective is to evaluate the potential dosimetric gains of performing functional avoidance‐based proton treatment planning using 4DCT derived ventilation imaging. 4DCT data of 31 patients from a prospective functional avoidance clinical trial were evaluated with intensity modulated proton therapy (IMPT) plans and compared with clinical volumetric modulated arc therapy (VMAT) plans. Dosimetric parameters were compared between standard and functional plans with IMPT and VMAT with one‐way analysis of variance and post hoc paired student t‐test. Normal Tissue Complication Probability (NTCP) models were employed to estimate the risk of two toxicity endpoints for healthy lung tissues. Dose degradation due to proton motion interplay effect was evaluated. Functional IMPT plans led to significant dose reduction to functional lung structures when compared with functional VMAT without significant dose increase to Organ at Risk (OAR) structures. When interplay effect is considered, no significant dose degradation was observed for the OARs or the clinical target volume (CTV) volumes for functional IMPT. Using fV20 as the dose metric and Grade 2+ pneumonitis as toxicity endpoint, there is a mean 5.7% reduction in Grade 2+ RP with the functional IMPT and as high as 26% in reduction for individual patient when compared to the standard IMPT planning. Functional IMPT was able to spare healthy lung tissue to avoid excess dose to normal structures while maintaining satisfying target coverage. NTCP calculation also shows that the risk of pulmonary complications can be further reduced with functional based IMPT. John Wiley and Sons Inc. 2021-06-22 /pmc/articles/PMC8292710/ /pubmed/34159715 http://dx.doi.org/10.1002/acm2.13323 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
Dougherty, Jingjing M.
Castillo, Edward
Castillo, Richard
Faught, Austin M.
Pepin, Mark
Park, Sean S.
Beltran, Chris J.
Guerrero, Thomas
Grills, Inga
Vinogradskiy, Yevgeniy
Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer
title Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer
title_full Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer
title_fullStr Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer
title_full_unstemmed Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer
title_short Functional avoidance‐based intensity modulated proton therapy with 4DCT derived ventilation imaging for lung cancer
title_sort functional avoidance‐based intensity modulated proton therapy with 4dct derived ventilation imaging for lung cancer
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8292710/
https://www.ncbi.nlm.nih.gov/pubmed/34159715
http://dx.doi.org/10.1002/acm2.13323
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