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Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts

The major problem with ventilation distribution calculations using DIR and 4DCT is the motion artifacts in 4DCT. Quite often not all phases would exhibit mushroom motion artifacts. If the ventilation series similarity is sufficiently robust, the ventilation distribution can be calculated using only...

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Autores principales: Zhang, Geoffrey G., Latifi, Kujtim, Feygelman, Vladimir, Chou, Kuei-Ting, Huang, Tzung-Chi, Dilling, Thomas J., Perez, Bradford A., Moros, Eduardo G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5623778/
https://www.ncbi.nlm.nih.gov/pubmed/29097945
http://dx.doi.org/10.1155/2017/9730380
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author Zhang, Geoffrey G.
Latifi, Kujtim
Feygelman, Vladimir
Chou, Kuei-Ting
Huang, Tzung-Chi
Dilling, Thomas J.
Perez, Bradford A.
Moros, Eduardo G.
author_facet Zhang, Geoffrey G.
Latifi, Kujtim
Feygelman, Vladimir
Chou, Kuei-Ting
Huang, Tzung-Chi
Dilling, Thomas J.
Perez, Bradford A.
Moros, Eduardo G.
author_sort Zhang, Geoffrey G.
collection PubMed
description The major problem with ventilation distribution calculations using DIR and 4DCT is the motion artifacts in 4DCT. Quite often not all phases would exhibit mushroom motion artifacts. If the ventilation series similarity is sufficiently robust, the ventilation distribution can be calculated using only the artifact-free phases. This study investigated the ventilation similarity among the data derived from different respiration phases. Fifteen lung cancer cases were analyzed. In each case, DIR was performed between the end-expiration phase and all other phases. Ventilation distributions were then calculated using the deformation matrices. The similarity was compared between the series ventilation distributions. The correlation between the majority phases was reasonably good, with average SCC values between 0.28 and 0.70 for the original data and 0.30 and 0.75 after smoothing. The better correlation between the neighboring phases, with average SCC values between 0.55 and 0.70 for the original data, revealed the nonlinear property of the dynamic ventilation. DSC analysis showed the same trend. To reduce the errors if motion artifacts are present, the phases without serious mushroom artifacts may be used. To minimize the effect of the nonlinearity in dynamic ventilation, the calculation phase should be chosen as close to the end-inspiration as possible.
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spelling pubmed-56237782017-10-26 Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts Zhang, Geoffrey G. Latifi, Kujtim Feygelman, Vladimir Chou, Kuei-Ting Huang, Tzung-Chi Dilling, Thomas J. Perez, Bradford A. Moros, Eduardo G. Contrast Media Mol Imaging Research Article The major problem with ventilation distribution calculations using DIR and 4DCT is the motion artifacts in 4DCT. Quite often not all phases would exhibit mushroom motion artifacts. If the ventilation series similarity is sufficiently robust, the ventilation distribution can be calculated using only the artifact-free phases. This study investigated the ventilation similarity among the data derived from different respiration phases. Fifteen lung cancer cases were analyzed. In each case, DIR was performed between the end-expiration phase and all other phases. Ventilation distributions were then calculated using the deformation matrices. The similarity was compared between the series ventilation distributions. The correlation between the majority phases was reasonably good, with average SCC values between 0.28 and 0.70 for the original data and 0.30 and 0.75 after smoothing. The better correlation between the neighboring phases, with average SCC values between 0.55 and 0.70 for the original data, revealed the nonlinear property of the dynamic ventilation. DSC analysis showed the same trend. To reduce the errors if motion artifacts are present, the phases without serious mushroom artifacts may be used. To minimize the effect of the nonlinearity in dynamic ventilation, the calculation phase should be chosen as close to the end-inspiration as possible. Hindawi 2017-09-17 /pmc/articles/PMC5623778/ /pubmed/29097945 http://dx.doi.org/10.1155/2017/9730380 Text en Copyright © 2017 Geoffrey G. Zhang et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhang, Geoffrey G.
Latifi, Kujtim
Feygelman, Vladimir
Chou, Kuei-Ting
Huang, Tzung-Chi
Dilling, Thomas J.
Perez, Bradford A.
Moros, Eduardo G.
Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts
title Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts
title_full Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts
title_fullStr Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts
title_full_unstemmed Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts
title_short Ventilation Series Similarity: A Study for Ventilation Calculation Using Deformable Image Registration and 4DCT to Avoid Motion Artifacts
title_sort ventilation series similarity: a study for ventilation calculation using deformable image registration and 4dct to avoid motion artifacts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5623778/
https://www.ncbi.nlm.nih.gov/pubmed/29097945
http://dx.doi.org/10.1155/2017/9730380
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