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Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method

BACKGROUND: In MR-based radiotherapy (RT), MRI images are co-registered to the planning CT to leverage MR image information for RT planning. Especially in brain stereotactic RT, where typical CTV-PTV margins are 1-2 mm, high registration accuracy is critical. Several factors influence the registrati...

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Autores principales: Masitho, Siti, Putz, Florian, Mengling, Veit, Reißig, Lisa, Voigt, Raphaela, Bäuerle, Tobias, Janka, Rolf, Fietkau, Rainer, Bert, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9948832/
https://www.ncbi.nlm.nih.gov/pubmed/35643799
http://dx.doi.org/10.1016/j.zemedi.2022.04.004
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author Masitho, Siti
Putz, Florian
Mengling, Veit
Reißig, Lisa
Voigt, Raphaela
Bäuerle, Tobias
Janka, Rolf
Fietkau, Rainer
Bert, Christoph
author_facet Masitho, Siti
Putz, Florian
Mengling, Veit
Reißig, Lisa
Voigt, Raphaela
Bäuerle, Tobias
Janka, Rolf
Fietkau, Rainer
Bert, Christoph
author_sort Masitho, Siti
collection PubMed
description BACKGROUND: In MR-based radiotherapy (RT), MRI images are co-registered to the planning CT to leverage MR image information for RT planning. Especially in brain stereotactic RT, where typical CTV-PTV margins are 1-2 mm, high registration accuracy is critical. Several factors influence the registration accuracy, including the acquisition setup during MR simulation and the registration methods. PURPOSE: In this work, the impact of the MRI acquisition setup and registration method was evaluated in the context of brain RT, both geometrically and dosimetrically. METHODS AND MATERIALS: MRI of 20 brain radiotherapy patients was acquired in two MRI acquisition setups (RT and diagnostic). Three different automatic registration tools provided by three treatment planning systems were used to rigidly register both MRIs and CT in addition to the clinical registration. Segmentation-based evaluation using Hausdorff Distance (HD)/Dice Similarity Coefficient and landmark-based evaluation were used as evaluation metrics. Dose-volume-histograms were evaluated for target volumes and various organs at risks. RESULTS: MRI acquisition in the RT setup provided a similar head extension as compared to the planning CT. The registration method had a more significant influence than the acquisition setup (Wilcoxon signed-rank test, p<0.05). When registering using a less optimal registration method, the RT setup improved the registration accuracy compared to the diagnostic setup (Difference: ΔMHD = 0.16 mm, ΔHD(P95) = 0.64 mm, mean Euclidean distance (ΔmEuD) = 2.65 mm). Different registration methods and acquisition setups lead to the variation of the clinical DVH. Acquiring MRI in the RT setup can improve PTV and GTV coverage compared to the diagnostic setup. CONCLUSIONS: Both MRI acquisition setup and registration method influence the MRI-CT registration accuracy in brain RT patients geometrically and dosimetrically. MR-simulation in the RT setup assures optimal registration accuracy if automatic registration is impaired, and therefore recommended for brain RT.
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spelling pubmed-99488322023-02-23 Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method Masitho, Siti Putz, Florian Mengling, Veit Reißig, Lisa Voigt, Raphaela Bäuerle, Tobias Janka, Rolf Fietkau, Rainer Bert, Christoph Z Med Phys Original Paper BACKGROUND: In MR-based radiotherapy (RT), MRI images are co-registered to the planning CT to leverage MR image information for RT planning. Especially in brain stereotactic RT, where typical CTV-PTV margins are 1-2 mm, high registration accuracy is critical. Several factors influence the registration accuracy, including the acquisition setup during MR simulation and the registration methods. PURPOSE: In this work, the impact of the MRI acquisition setup and registration method was evaluated in the context of brain RT, both geometrically and dosimetrically. METHODS AND MATERIALS: MRI of 20 brain radiotherapy patients was acquired in two MRI acquisition setups (RT and diagnostic). Three different automatic registration tools provided by three treatment planning systems were used to rigidly register both MRIs and CT in addition to the clinical registration. Segmentation-based evaluation using Hausdorff Distance (HD)/Dice Similarity Coefficient and landmark-based evaluation were used as evaluation metrics. Dose-volume-histograms were evaluated for target volumes and various organs at risks. RESULTS: MRI acquisition in the RT setup provided a similar head extension as compared to the planning CT. The registration method had a more significant influence than the acquisition setup (Wilcoxon signed-rank test, p<0.05). When registering using a less optimal registration method, the RT setup improved the registration accuracy compared to the diagnostic setup (Difference: ΔMHD = 0.16 mm, ΔHD(P95) = 0.64 mm, mean Euclidean distance (ΔmEuD) = 2.65 mm). Different registration methods and acquisition setups lead to the variation of the clinical DVH. Acquiring MRI in the RT setup can improve PTV and GTV coverage compared to the diagnostic setup. CONCLUSIONS: Both MRI acquisition setup and registration method influence the MRI-CT registration accuracy in brain RT patients geometrically and dosimetrically. MR-simulation in the RT setup assures optimal registration accuracy if automatic registration is impaired, and therefore recommended for brain RT. Elsevier 2022-05-25 /pmc/articles/PMC9948832/ /pubmed/35643799 http://dx.doi.org/10.1016/j.zemedi.2022.04.004 Text en © 2022 Published by Elsevier GmbH on behalf of DGMP, ÖGMP and SSRMP. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Paper
Masitho, Siti
Putz, Florian
Mengling, Veit
Reißig, Lisa
Voigt, Raphaela
Bäuerle, Tobias
Janka, Rolf
Fietkau, Rainer
Bert, Christoph
Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method
title Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method
title_full Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method
title_fullStr Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method
title_full_unstemmed Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method
title_short Accuracy of MRI-CT registration in brain stereotactic radiotherapy: Impact of MRI acquisition setup and registration method
title_sort accuracy of mri-ct registration in brain stereotactic radiotherapy: impact of mri acquisition setup and registration method
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9948832/
https://www.ncbi.nlm.nih.gov/pubmed/35643799
http://dx.doi.org/10.1016/j.zemedi.2022.04.004
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