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Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment

PURPOSE: Electrocardiogram-gated computed tomography with coronary angiography can be used for cardiac substructure sparing (CSS) optimization, which identifies and improves avoidance of cardiac substructures when treating with intensity modulated radiotherapy (IMRT). We investigated whether intensi...

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Autores principales: Taparra, Kekoa, Lester, Scott C., Harmsen, W. Scott, Petersen, Molly, Funk, Ryan K., Blanchard, Miran J., Young, Phillip, Herrmann, Joerg, Hunzeker, Ashley, Schultz, Heather, McCollough, Cynthia, Tasson, Alexandria, Leng, Shuai, Martenson, James A., Whitaker, Thomas J., Williamson, Eric, Laack, Nadia N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Particle Therapy Co-operative Group 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7574827/
https://www.ncbi.nlm.nih.gov/pubmed/33094130
http://dx.doi.org/10.14338/IJPT-20-00010.1
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author Taparra, Kekoa
Lester, Scott C.
Harmsen, W. Scott
Petersen, Molly
Funk, Ryan K.
Blanchard, Miran J.
Young, Phillip
Herrmann, Joerg
Hunzeker, Ashley
Schultz, Heather
McCollough, Cynthia
Tasson, Alexandria
Leng, Shuai
Martenson, James A.
Whitaker, Thomas J.
Williamson, Eric
Laack, Nadia N.
author_facet Taparra, Kekoa
Lester, Scott C.
Harmsen, W. Scott
Petersen, Molly
Funk, Ryan K.
Blanchard, Miran J.
Young, Phillip
Herrmann, Joerg
Hunzeker, Ashley
Schultz, Heather
McCollough, Cynthia
Tasson, Alexandria
Leng, Shuai
Martenson, James A.
Whitaker, Thomas J.
Williamson, Eric
Laack, Nadia N.
author_sort Taparra, Kekoa
collection PubMed
description PURPOSE: Electrocardiogram-gated computed tomography with coronary angiography can be used for cardiac substructure sparing (CSS) optimization, which identifies and improves avoidance of cardiac substructures when treating with intensity modulated radiotherapy (IMRT). We investigated whether intensity modulated proton therapy (IMPT) would further reduce dose to cardiac substructures for patients with mediastinal lymphoma. PATIENTS AND METHODS: Twenty-one patients with mediastinal lymphoma were enrolled and underwent electrocardiogram-gated computed tomography angiography during or shortly after simulation for radiotherapy planning. Thirteen patients with delineated cardiac substructures underwent comparative planning with both IMPT and IMRT. Plans were normalized for equivalent (95%) target volume coverage for treatment comparison. RESULTS: Thirteen patients met criteria for this study. The median size of the mediastinal lymphadenopathy was 7.9 cm at the greatest diameter. Compared with IMRT-CSS, IMPT-CSS significantly reduced mean dose to all cardiac substructures, including 3 coronary arteries and 4 cardiac valves. Use of IMPT significantly reduced average whole-heart dose from 9.6 to 4.9 Gy (P < .0001), and average mean lung dose was 9.7 vs 5.8 Gy (P < .0001). Prospectively defined clinically meaningful improvement was observed in at least 1 coronary artery in 9 patients (69%), at least 1 cardiac valve in 10 patients (77%), and whole heart in all 13 patients. CONCLUSIONS: For patients with mediastinal lymphoma, IMPT-CSS treatment planning significantly reduced radiation dose to cardiac substructures. The significant improvements outlined in this study for proton therapy suggest possible clinical improvement in alignment with previous analyses of CSS optimization.
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spelling pubmed-75748272020-10-21 Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment Taparra, Kekoa Lester, Scott C. Harmsen, W. Scott Petersen, Molly Funk, Ryan K. Blanchard, Miran J. Young, Phillip Herrmann, Joerg Hunzeker, Ashley Schultz, Heather McCollough, Cynthia Tasson, Alexandria Leng, Shuai Martenson, James A. Whitaker, Thomas J. Williamson, Eric Laack, Nadia N. Int J Part Ther Original Articles PURPOSE: Electrocardiogram-gated computed tomography with coronary angiography can be used for cardiac substructure sparing (CSS) optimization, which identifies and improves avoidance of cardiac substructures when treating with intensity modulated radiotherapy (IMRT). We investigated whether intensity modulated proton therapy (IMPT) would further reduce dose to cardiac substructures for patients with mediastinal lymphoma. PATIENTS AND METHODS: Twenty-one patients with mediastinal lymphoma were enrolled and underwent electrocardiogram-gated computed tomography angiography during or shortly after simulation for radiotherapy planning. Thirteen patients with delineated cardiac substructures underwent comparative planning with both IMPT and IMRT. Plans were normalized for equivalent (95%) target volume coverage for treatment comparison. RESULTS: Thirteen patients met criteria for this study. The median size of the mediastinal lymphadenopathy was 7.9 cm at the greatest diameter. Compared with IMRT-CSS, IMPT-CSS significantly reduced mean dose to all cardiac substructures, including 3 coronary arteries and 4 cardiac valves. Use of IMPT significantly reduced average whole-heart dose from 9.6 to 4.9 Gy (P < .0001), and average mean lung dose was 9.7 vs 5.8 Gy (P < .0001). Prospectively defined clinically meaningful improvement was observed in at least 1 coronary artery in 9 patients (69%), at least 1 cardiac valve in 10 patients (77%), and whole heart in all 13 patients. CONCLUSIONS: For patients with mediastinal lymphoma, IMPT-CSS treatment planning significantly reduced radiation dose to cardiac substructures. The significant improvements outlined in this study for proton therapy suggest possible clinical improvement in alignment with previous analyses of CSS optimization. The Particle Therapy Co-operative Group 2020-09-04 /pmc/articles/PMC7574827/ /pubmed/33094130 http://dx.doi.org/10.14338/IJPT-20-00010.1 Text en ©Copyright 2020 The Author(s) Distributed under Creative Commons CC-BY (https://creativecommons.org/licenses/cc-by/4.0/)
spellingShingle Original Articles
Taparra, Kekoa
Lester, Scott C.
Harmsen, W. Scott
Petersen, Molly
Funk, Ryan K.
Blanchard, Miran J.
Young, Phillip
Herrmann, Joerg
Hunzeker, Ashley
Schultz, Heather
McCollough, Cynthia
Tasson, Alexandria
Leng, Shuai
Martenson, James A.
Whitaker, Thomas J.
Williamson, Eric
Laack, Nadia N.
Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment
title Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment
title_full Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment
title_fullStr Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment
title_full_unstemmed Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment
title_short Reducing Heart Dose with Protons and Cardiac Substructure Sparing for Mediastinal Lymphoma Treatment
title_sort reducing heart dose with protons and cardiac substructure sparing for mediastinal lymphoma treatment
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7574827/
https://www.ncbi.nlm.nih.gov/pubmed/33094130
http://dx.doi.org/10.14338/IJPT-20-00010.1
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