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Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)

Rectum and bladder volumes play an important role in the dose distribution reproducibility in prostate cancer adenocarcinoma (PCa) radiotherapy, especially for particle therapy, where density variation can strongly affect the dose distribution. We investigated the reliability and reproducibility of...

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Autores principales: Russo, Stefania, Ricotti, Rosalinda, Molinelli, Silvia, Patti, Filippo, Barcellini, Amelia, Mastella, Edoardo, Pella, Andrea, Paganelli, Chiara, Marvaso, Giulia, Pepa, Matteo, Comi, Stefania, Zaffaroni, Mattia, Avuzzi, Barbara, Giandini, Tommaso, Pignoli, Emanuele, Valdagni, Riccardo, Baroni, Guido, Cattani, Federica, Ciocca, Mario, Jereczek-Fossa, Barbara Alicja, Orlandi, Ester, Orecchia, Roberto, Vischioni, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506150/
https://www.ncbi.nlm.nih.gov/pubmed/34650922
http://dx.doi.org/10.3389/fonc.2021.740661
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author Russo, Stefania
Ricotti, Rosalinda
Molinelli, Silvia
Patti, Filippo
Barcellini, Amelia
Mastella, Edoardo
Pella, Andrea
Paganelli, Chiara
Marvaso, Giulia
Pepa, Matteo
Comi, Stefania
Zaffaroni, Mattia
Avuzzi, Barbara
Giandini, Tommaso
Pignoli, Emanuele
Valdagni, Riccardo
Baroni, Guido
Cattani, Federica
Ciocca, Mario
Jereczek-Fossa, Barbara Alicja
Orlandi, Ester
Orecchia, Roberto
Vischioni, Barbara
author_facet Russo, Stefania
Ricotti, Rosalinda
Molinelli, Silvia
Patti, Filippo
Barcellini, Amelia
Mastella, Edoardo
Pella, Andrea
Paganelli, Chiara
Marvaso, Giulia
Pepa, Matteo
Comi, Stefania
Zaffaroni, Mattia
Avuzzi, Barbara
Giandini, Tommaso
Pignoli, Emanuele
Valdagni, Riccardo
Baroni, Guido
Cattani, Federica
Ciocca, Mario
Jereczek-Fossa, Barbara Alicja
Orlandi, Ester
Orecchia, Roberto
Vischioni, Barbara
author_sort Russo, Stefania
collection PubMed
description Rectum and bladder volumes play an important role in the dose distribution reproducibility in prostate cancer adenocarcinoma (PCa) radiotherapy, especially for particle therapy, where density variation can strongly affect the dose distribution. We investigated the reliability and reproducibility of our image-guided radiotherapy (IGRT) and treatment planning protocol for carbon ion radiotherapy (CIRT) within the phase II mixed beam study (AIRC IG 14300) for the treatment of high-risk PCa. In order to calculate the daily dose distribution, a set of synthetic computed tomography (sCT) images was generated from the cone beam computed tomography (CBCT) images acquired in each treatment session. Planning target volume (PTV) together with rectum and bladder volume variation was evaluated with sCT dose-volume histogram (DVH) metric deviations from the planning values. The correlations between the bladder and rectum volumes, and the corresponding DVH metrics, were also assessed. No significant difference in the bladder, rectum, and PTV median volumes between the planning computed tomography (pCT) and the sCT was found. In addition, no significant difference was assessed when comparing the average DVHs and median DVH metrics between pCT and sCT. Dose deviations determined by bladder and rectum filling variations demonstrated that dose distributions were reproducible in terms of both target coverage and organs at risk (OARs) sparing.
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spelling pubmed-85061502021-10-13 Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300) Russo, Stefania Ricotti, Rosalinda Molinelli, Silvia Patti, Filippo Barcellini, Amelia Mastella, Edoardo Pella, Andrea Paganelli, Chiara Marvaso, Giulia Pepa, Matteo Comi, Stefania Zaffaroni, Mattia Avuzzi, Barbara Giandini, Tommaso Pignoli, Emanuele Valdagni, Riccardo Baroni, Guido Cattani, Federica Ciocca, Mario Jereczek-Fossa, Barbara Alicja Orlandi, Ester Orecchia, Roberto Vischioni, Barbara Front Oncol Oncology Rectum and bladder volumes play an important role in the dose distribution reproducibility in prostate cancer adenocarcinoma (PCa) radiotherapy, especially for particle therapy, where density variation can strongly affect the dose distribution. We investigated the reliability and reproducibility of our image-guided radiotherapy (IGRT) and treatment planning protocol for carbon ion radiotherapy (CIRT) within the phase II mixed beam study (AIRC IG 14300) for the treatment of high-risk PCa. In order to calculate the daily dose distribution, a set of synthetic computed tomography (sCT) images was generated from the cone beam computed tomography (CBCT) images acquired in each treatment session. Planning target volume (PTV) together with rectum and bladder volume variation was evaluated with sCT dose-volume histogram (DVH) metric deviations from the planning values. The correlations between the bladder and rectum volumes, and the corresponding DVH metrics, were also assessed. No significant difference in the bladder, rectum, and PTV median volumes between the planning computed tomography (pCT) and the sCT was found. In addition, no significant difference was assessed when comparing the average DVHs and median DVH metrics between pCT and sCT. Dose deviations determined by bladder and rectum filling variations demonstrated that dose distributions were reproducible in terms of both target coverage and organs at risk (OARs) sparing. Frontiers Media S.A. 2021-09-28 /pmc/articles/PMC8506150/ /pubmed/34650922 http://dx.doi.org/10.3389/fonc.2021.740661 Text en Copyright © 2021 Russo, Ricotti, Molinelli, Patti, Barcellini, Mastella, Pella, Paganelli, Marvaso, Pepa, Comi, Zaffaroni, Avuzzi, Giandini, Pignoli, Valdagni, Baroni, Cattani, Ciocca, Jereczek-Fossa, Orlandi, Orecchia and Vischioni https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Russo, Stefania
Ricotti, Rosalinda
Molinelli, Silvia
Patti, Filippo
Barcellini, Amelia
Mastella, Edoardo
Pella, Andrea
Paganelli, Chiara
Marvaso, Giulia
Pepa, Matteo
Comi, Stefania
Zaffaroni, Mattia
Avuzzi, Barbara
Giandini, Tommaso
Pignoli, Emanuele
Valdagni, Riccardo
Baroni, Guido
Cattani, Federica
Ciocca, Mario
Jereczek-Fossa, Barbara Alicja
Orlandi, Ester
Orecchia, Roberto
Vischioni, Barbara
Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)
title Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)
title_full Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)
title_fullStr Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)
title_full_unstemmed Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)
title_short Dosimetric Impact of Inter-Fraction Anatomical Changes in Carbon Ion Boost Treatment for High-Risk Prostate Cancer (AIRC IG 14300)
title_sort dosimetric impact of inter-fraction anatomical changes in carbon ion boost treatment for high-risk prostate cancer (airc ig 14300)
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506150/
https://www.ncbi.nlm.nih.gov/pubmed/34650922
http://dx.doi.org/10.3389/fonc.2021.740661
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