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Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom
BACKGROUND: This study aimed to evaluate the target volume and dose accuracy in intrafraction cases using 4-dimensional imaging modalities and an in-house dynamic thorax phantom. Intrafraction motion can create errors in the definition of target volumes, which can significantly affect the accuracy o...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Via Medica
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9591039/ https://www.ncbi.nlm.nih.gov/pubmed/36299381 http://dx.doi.org/10.5603/RPOR.a2022.0029 |
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author | Haqqi, Firyal Dhiyaul Sudarmaji, Arief Wibowo, Wahyu Edy Nasution, Nuruddin Handoko, Handoko Fauzia, Annisa Rahma Qudsi, Jihadil Pawiro, Supriyanto Ardjo |
author_facet | Haqqi, Firyal Dhiyaul Sudarmaji, Arief Wibowo, Wahyu Edy Nasution, Nuruddin Handoko, Handoko Fauzia, Annisa Rahma Qudsi, Jihadil Pawiro, Supriyanto Ardjo |
author_sort | Haqqi, Firyal Dhiyaul |
collection | PubMed |
description | BACKGROUND: This study aimed to evaluate the target volume and dose accuracy in intrafraction cases using 4-dimensional imaging modalities and an in-house dynamic thorax phantom. Intrafraction motion can create errors in the definition of target volumes, which can significantly affect the accuracy of radiation delivery. Motion management using 4-dimensional modalities is required to reduce the risk. MATERIALS AND METHODS: Two variations in both breathing amplitude and target size were applied in this study. From these variations, internal target volume (ITVs) contoured in 10 phases of 4D-CT (ITV(10)), average intensity projection (AIP), and mid-ventilation (Mid-V) images were reconstructed from all 4D-CT datasets as reference images. Free-breathing (FB), augmentation free-breathing (Aug-FB), and static images were also acquired using the 3D-CT protocol for comparisons. In dose evaluations, the 4D-CBCT modality was applied before irradiation to obtain position correction. Then, the dose was evaluated with Gafchromic film EBT3. RESULTS: The ITV(10), AIP, and Mid-V provide GTVs that match the static GTV. The AIP and Mid-V reference images allowed reductions in ITVs and PTVs without reducing the range of target movement areas compared to FB and Aug-FB images with varying percentages in the range of 29.17% to 48.70%. In the dose evaluation, the largest discrepancies between the measured and planned doses were 10.39% for the FB images and 9.21% for the Aug-FB images. CONCLUSION: The 4D-CT modality can enable accurate definition of the target volume and reduce the PTV. Furthermore, 4D-CBCT provides localization images during registration to facilitate position correction and accurate dose delivery. |
format | Online Article Text |
id | pubmed-9591039 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Via Medica |
record_format | MEDLINE/PubMed |
spelling | pubmed-95910392022-10-25 Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom Haqqi, Firyal Dhiyaul Sudarmaji, Arief Wibowo, Wahyu Edy Nasution, Nuruddin Handoko, Handoko Fauzia, Annisa Rahma Qudsi, Jihadil Pawiro, Supriyanto Ardjo Rep Pract Oncol Radiother Technical Note BACKGROUND: This study aimed to evaluate the target volume and dose accuracy in intrafraction cases using 4-dimensional imaging modalities and an in-house dynamic thorax phantom. Intrafraction motion can create errors in the definition of target volumes, which can significantly affect the accuracy of radiation delivery. Motion management using 4-dimensional modalities is required to reduce the risk. MATERIALS AND METHODS: Two variations in both breathing amplitude and target size were applied in this study. From these variations, internal target volume (ITVs) contoured in 10 phases of 4D-CT (ITV(10)), average intensity projection (AIP), and mid-ventilation (Mid-V) images were reconstructed from all 4D-CT datasets as reference images. Free-breathing (FB), augmentation free-breathing (Aug-FB), and static images were also acquired using the 3D-CT protocol for comparisons. In dose evaluations, the 4D-CBCT modality was applied before irradiation to obtain position correction. Then, the dose was evaluated with Gafchromic film EBT3. RESULTS: The ITV(10), AIP, and Mid-V provide GTVs that match the static GTV. The AIP and Mid-V reference images allowed reductions in ITVs and PTVs without reducing the range of target movement areas compared to FB and Aug-FB images with varying percentages in the range of 29.17% to 48.70%. In the dose evaluation, the largest discrepancies between the measured and planned doses were 10.39% for the FB images and 9.21% for the Aug-FB images. CONCLUSION: The 4D-CT modality can enable accurate definition of the target volume and reduce the PTV. Furthermore, 4D-CBCT provides localization images during registration to facilitate position correction and accurate dose delivery. Via Medica 2022-05-19 /pmc/articles/PMC9591039/ /pubmed/36299381 http://dx.doi.org/10.5603/RPOR.a2022.0029 Text en © 2022 Greater Poland Cancer Centre https://creativecommons.org/licenses/by-nc-nd/4.0/This article is available in open access under Creative Common Attribution-Non-Commercial-No Derivatives 4.0 International (CC BY-NC-ND 4.0) license, allowing to download articles and share them with others as long as they credit the authors and the publisher, but without permission to change them in any way or use them commercially |
spellingShingle | Technical Note Haqqi, Firyal Dhiyaul Sudarmaji, Arief Wibowo, Wahyu Edy Nasution, Nuruddin Handoko, Handoko Fauzia, Annisa Rahma Qudsi, Jihadil Pawiro, Supriyanto Ardjo Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom |
title | Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom |
title_full | Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom |
title_fullStr | Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom |
title_full_unstemmed | Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom |
title_short | Evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4D-CT and 4D-CBCT images using an in-house dynamic thorax phantom |
title_sort | evaluation of target volume and dose accuracy in intrafractional cases of lung cancer based on 4d-ct and 4d-cbct images using an in-house dynamic thorax phantom |
topic | Technical Note |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9591039/ https://www.ncbi.nlm.nih.gov/pubmed/36299381 http://dx.doi.org/10.5603/RPOR.a2022.0029 |
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