Cargando…

A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures

BACKGROUND: Dose to heart substructures is a better predictor for major adverse cardiac events (MACE) than mean heart dose (MHD). We propose an avoidance planning strategy for important cardiac substructures. MATERIAL AND METHODS: Two plans, clinical and cardiac substructure‐avoidance plan, were gen...

Descripción completa

Detalles Bibliográficos
Autores principales: Feng, AiHui, Duan, YanHua, Yang, ZhangRu, Shao, Yan, Wang, Hao, Chen, Hua, Gu, HengLe, Huang, Ying, Shen, ZhenJiong, Wang, Xufei, Xu, ZhiYong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10691619/
https://www.ncbi.nlm.nih.gov/pubmed/37568269
http://dx.doi.org/10.1002/acm2.14119
_version_ 1785152771820879872
author Feng, AiHui
Duan, YanHua
Yang, ZhangRu
Shao, Yan
Wang, Hao
Chen, Hua
Gu, HengLe
Huang, Ying
Shen, ZhenJiong
Wang, Xufei
Xu, ZhiYong
author_facet Feng, AiHui
Duan, YanHua
Yang, ZhangRu
Shao, Yan
Wang, Hao
Chen, Hua
Gu, HengLe
Huang, Ying
Shen, ZhenJiong
Wang, Xufei
Xu, ZhiYong
author_sort Feng, AiHui
collection PubMed
description BACKGROUND: Dose to heart substructures is a better predictor for major adverse cardiac events (MACE) than mean heart dose (MHD). We propose an avoidance planning strategy for important cardiac substructures. MATERIAL AND METHODS: Two plans, clinical and cardiac substructure‐avoidance plan, were generated for twenty patients. Five dose‐sensitive substructures, including left ventricle, pulmonary artery, left anterior descending branch, left circumflex branch and the coronary artery were chosen. The avoidance plan aims to meet the target criteria and organ‐at‐risk (OARs) constraints while minimizing the dose parameters of the above five substructures. The dosimetric assessments included the mean dose and the maximum dose of cardiac substructures and several volume parameters. In addition, we also evaluated the relative risk of coronary artery disease (CAD), chronic heart failure (CHF), and radiation pneumonia (RP). RESULTS: Pearson correlation coefficient and R (2) value of linear regression fitting demonstrated that MHD had poor prediction ability for the mean dose of the cardiac substructures. Compared to clinical plans, an avoidance plan is able to statistically significantly decrease the dose to key substructures. Meanwhile, the dose to OARs and the coverage of the target are comparable in the two plans. In addition, it can be observed that the avoidance plan statistically decreases the relative risks of CAD, CHF, and RP. CONCLUSIONS: The substructure‐avoidance planning strategy that incorporates the cardiac substructures into optimization process, can protect the important heart substructures, such as left ventricle, left anterior descending branch and pulmonary artery, achieving the substantive sparing of dose‐sensitive cardiac structures, and have the potential to decrease the relative risks of CAD, CHF, and RP.
format Online
Article
Text
id pubmed-10691619
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-106916192023-12-02 A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures Feng, AiHui Duan, YanHua Yang, ZhangRu Shao, Yan Wang, Hao Chen, Hua Gu, HengLe Huang, Ying Shen, ZhenJiong Wang, Xufei Xu, ZhiYong J Appl Clin Med Phys Radiation Oncology Physics BACKGROUND: Dose to heart substructures is a better predictor for major adverse cardiac events (MACE) than mean heart dose (MHD). We propose an avoidance planning strategy for important cardiac substructures. MATERIAL AND METHODS: Two plans, clinical and cardiac substructure‐avoidance plan, were generated for twenty patients. Five dose‐sensitive substructures, including left ventricle, pulmonary artery, left anterior descending branch, left circumflex branch and the coronary artery were chosen. The avoidance plan aims to meet the target criteria and organ‐at‐risk (OARs) constraints while minimizing the dose parameters of the above five substructures. The dosimetric assessments included the mean dose and the maximum dose of cardiac substructures and several volume parameters. In addition, we also evaluated the relative risk of coronary artery disease (CAD), chronic heart failure (CHF), and radiation pneumonia (RP). RESULTS: Pearson correlation coefficient and R (2) value of linear regression fitting demonstrated that MHD had poor prediction ability for the mean dose of the cardiac substructures. Compared to clinical plans, an avoidance plan is able to statistically significantly decrease the dose to key substructures. Meanwhile, the dose to OARs and the coverage of the target are comparable in the two plans. In addition, it can be observed that the avoidance plan statistically decreases the relative risks of CAD, CHF, and RP. CONCLUSIONS: The substructure‐avoidance planning strategy that incorporates the cardiac substructures into optimization process, can protect the important heart substructures, such as left ventricle, left anterior descending branch and pulmonary artery, achieving the substantive sparing of dose‐sensitive cardiac structures, and have the potential to decrease the relative risks of CAD, CHF, and RP. John Wiley and Sons Inc. 2023-08-11 /pmc/articles/PMC10691619/ /pubmed/37568269 http://dx.doi.org/10.1002/acm2.14119 Text en © 2023 The Authors. Journal of Applied Clinical Medical Physics published by Wiley Periodicals, LLC on behalf of The 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
Feng, AiHui
Duan, YanHua
Yang, ZhangRu
Shao, Yan
Wang, Hao
Chen, Hua
Gu, HengLe
Huang, Ying
Shen, ZhenJiong
Wang, Xufei
Xu, ZhiYong
A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures
title A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures
title_full A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures
title_fullStr A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures
title_full_unstemmed A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures
title_short A planning strategy may reduce the risk of heart diseases and radiation pneumonia: Avoiding the specific heart substructures
title_sort planning strategy may reduce the risk of heart diseases and radiation pneumonia: avoiding the specific heart substructures
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10691619/
https://www.ncbi.nlm.nih.gov/pubmed/37568269
http://dx.doi.org/10.1002/acm2.14119
work_keys_str_mv AT fengaihui aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT duanyanhua aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT yangzhangru aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT shaoyan aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT wanghao aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT chenhua aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT guhengle aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT huangying aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT shenzhenjiong aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT wangxufei aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT xuzhiyong aplanningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT fengaihui planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT duanyanhua planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT yangzhangru planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT shaoyan planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT wanghao planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT chenhua planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT guhengle planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT huangying planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT shenzhenjiong planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT wangxufei planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures
AT xuzhiyong planningstrategymayreducetheriskofheartdiseasesandradiationpneumoniaavoidingthespecificheartsubstructures