Cargando…

Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods

The quality assurance of synthetic CT (sCT) is crucial for safe clinical transfer to an MRI-only radiotherapy planning workflow. The aim of this work is to propose a population-based process assessing local errors in the generation of sCTs and their impact on dose distribution. For the analysis to b...

Descripción completa

Detalles Bibliográficos
Autores principales: Chourak, Hilda, Barateau, Anaïs, Tahri, Safaa, Cadin, Capucine, Lafond, Caroline, Nunes, Jean-Claude, Boue-Rafle, Adrien, Perazzi, Mathias, Greer, Peter B., Dowling, Jason, de Crevoisier, Renaud, Acosta, Oscar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9589295/
https://www.ncbi.nlm.nih.gov/pubmed/36300084
http://dx.doi.org/10.3389/fonc.2022.968689
_version_ 1784814272856981504
author Chourak, Hilda
Barateau, Anaïs
Tahri, Safaa
Cadin, Capucine
Lafond, Caroline
Nunes, Jean-Claude
Boue-Rafle, Adrien
Perazzi, Mathias
Greer, Peter B.
Dowling, Jason
de Crevoisier, Renaud
Acosta, Oscar
author_facet Chourak, Hilda
Barateau, Anaïs
Tahri, Safaa
Cadin, Capucine
Lafond, Caroline
Nunes, Jean-Claude
Boue-Rafle, Adrien
Perazzi, Mathias
Greer, Peter B.
Dowling, Jason
de Crevoisier, Renaud
Acosta, Oscar
author_sort Chourak, Hilda
collection PubMed
description The quality assurance of synthetic CT (sCT) is crucial for safe clinical transfer to an MRI-only radiotherapy planning workflow. The aim of this work is to propose a population-based process assessing local errors in the generation of sCTs and their impact on dose distribution. For the analysis to be anatomically meaningful, a customized interpatient registration method brought the population data to the same coordinate system. Then, the voxel-based process was applied on two sCT generation methods: a bulk-density method and a generative adversarial network. The CT and MRI pairs of 39 patients treated by radiotherapy for prostate cancer were used for sCT generation, and 26 of them with delineated structures were selected for analysis. Voxel-wise errors in sCT compared to CT were assessed for image intensities and dose calculation, and a population-based statistical test was applied to identify the regions where discrepancies were significant. The cumulative histograms of the mean absolute dose error per volume of tissue were computed to give a quantitative indication of the error for each generation method. Accurate interpatient registration was achieved, with mean Dice scores higher than 0.91 for all organs. The proposed method produces three-dimensional maps that precisely show the location of the major discrepancies for both sCT generation methods, highlighting the heterogeneity of image and dose errors for sCT generation methods from MRI across the pelvic anatomy. Hence, this method provides additional information that will assist with both sCT development and quality control for MRI-based planning radiotherapy.
format Online
Article
Text
id pubmed-9589295
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-95892952022-10-25 Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods Chourak, Hilda Barateau, Anaïs Tahri, Safaa Cadin, Capucine Lafond, Caroline Nunes, Jean-Claude Boue-Rafle, Adrien Perazzi, Mathias Greer, Peter B. Dowling, Jason de Crevoisier, Renaud Acosta, Oscar Front Oncol Oncology The quality assurance of synthetic CT (sCT) is crucial for safe clinical transfer to an MRI-only radiotherapy planning workflow. The aim of this work is to propose a population-based process assessing local errors in the generation of sCTs and their impact on dose distribution. For the analysis to be anatomically meaningful, a customized interpatient registration method brought the population data to the same coordinate system. Then, the voxel-based process was applied on two sCT generation methods: a bulk-density method and a generative adversarial network. The CT and MRI pairs of 39 patients treated by radiotherapy for prostate cancer were used for sCT generation, and 26 of them with delineated structures were selected for analysis. Voxel-wise errors in sCT compared to CT were assessed for image intensities and dose calculation, and a population-based statistical test was applied to identify the regions where discrepancies were significant. The cumulative histograms of the mean absolute dose error per volume of tissue were computed to give a quantitative indication of the error for each generation method. Accurate interpatient registration was achieved, with mean Dice scores higher than 0.91 for all organs. The proposed method produces three-dimensional maps that precisely show the location of the major discrepancies for both sCT generation methods, highlighting the heterogeneity of image and dose errors for sCT generation methods from MRI across the pelvic anatomy. Hence, this method provides additional information that will assist with both sCT development and quality control for MRI-based planning radiotherapy. Frontiers Media S.A. 2022-10-10 /pmc/articles/PMC9589295/ /pubmed/36300084 http://dx.doi.org/10.3389/fonc.2022.968689 Text en Copyright © 2022 Chourak, Barateau, Tahri, Cadin, Lafond, Nunes, Boue-Rafle, Perazzi, Greer, Dowling, de Crevoisier and Acosta 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
Chourak, Hilda
Barateau, Anaïs
Tahri, Safaa
Cadin, Capucine
Lafond, Caroline
Nunes, Jean-Claude
Boue-Rafle, Adrien
Perazzi, Mathias
Greer, Peter B.
Dowling, Jason
de Crevoisier, Renaud
Acosta, Oscar
Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods
title Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods
title_full Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods
title_fullStr Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods
title_full_unstemmed Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods
title_short Quality assurance for MRI-only radiation therapy: A voxel-wise population-based methodology for image and dose assessment of synthetic CT generation methods
title_sort quality assurance for mri-only radiation therapy: a voxel-wise population-based methodology for image and dose assessment of synthetic ct generation methods
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9589295/
https://www.ncbi.nlm.nih.gov/pubmed/36300084
http://dx.doi.org/10.3389/fonc.2022.968689
work_keys_str_mv AT chourakhilda qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT barateauanais qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT tahrisafaa qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT cadincapucine qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT lafondcaroline qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT nunesjeanclaude qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT bouerafleadrien qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT perazzimathias qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT greerpeterb qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT dowlingjason qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT decrevoisierrenaud qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods
AT acostaoscar qualityassuranceformrionlyradiationtherapyavoxelwisepopulationbasedmethodologyforimageanddoseassessmentofsyntheticctgenerationmethods