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Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration

PURPOSE: The purpose of this work was to use magnetic resonance imaging (MRI) of hyperpolarized (HP) (129)Xe dissolved in pulmonary tissue (PT) and red blood cells (RBCs) to detect regional changes to PT structure and perfusion in a partial-lung rat model of radiation-induced lung injury and compare...

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Autores principales: Zanette, Brandon, Stirrat, Elaine, Jelveh, Salomeh, Hope, Andrew, Santyr, Giles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5605308/
https://www.ncbi.nlm.nih.gov/pubmed/29114616
http://dx.doi.org/10.1016/j.adro.2017.05.005
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author Zanette, Brandon
Stirrat, Elaine
Jelveh, Salomeh
Hope, Andrew
Santyr, Giles
author_facet Zanette, Brandon
Stirrat, Elaine
Jelveh, Salomeh
Hope, Andrew
Santyr, Giles
author_sort Zanette, Brandon
collection PubMed
description PURPOSE: The purpose of this work was to use magnetic resonance imaging (MRI) of hyperpolarized (HP) (129)Xe dissolved in pulmonary tissue (PT) and red blood cells (RBCs) to detect regional changes to PT structure and perfusion in a partial-lung rat model of radiation-induced lung injury and compare with histology. METHODS AND MATERIALS: The right medial region of the lungs of 6 Sprague-Dawley rats was irradiated (20 Gy, single-fraction). A second nonirradiated cohort served as the control group. Imaging was performed 4 weeks after irradiation to quantify intensity and heterogeneity of PT and RBC (129)Xe signals. Imaging findings were correlated with measures of PT and RBC distribution. RESULTS: Asymmetric (right vs left) changes in (129)Xe signal intensity and heterogeneity were observed in the irradiated cohort but were not seen in the control group. PT signal was observed to increase in intensity and heterogeneity and RBC signal was observed to increase in heterogeneity in the irradiated right lungs, consistent with histology. CONCLUSION: Regional changes to PT and RBC (129)Xe signals are detectable 4 weeks following partial-lung irradiation in rats.
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spelling pubmed-56053082017-11-07 Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration Zanette, Brandon Stirrat, Elaine Jelveh, Salomeh Hope, Andrew Santyr, Giles Adv Radiat Oncol Scientific Article PURPOSE: The purpose of this work was to use magnetic resonance imaging (MRI) of hyperpolarized (HP) (129)Xe dissolved in pulmonary tissue (PT) and red blood cells (RBCs) to detect regional changes to PT structure and perfusion in a partial-lung rat model of radiation-induced lung injury and compare with histology. METHODS AND MATERIALS: The right medial region of the lungs of 6 Sprague-Dawley rats was irradiated (20 Gy, single-fraction). A second nonirradiated cohort served as the control group. Imaging was performed 4 weeks after irradiation to quantify intensity and heterogeneity of PT and RBC (129)Xe signals. Imaging findings were correlated with measures of PT and RBC distribution. RESULTS: Asymmetric (right vs left) changes in (129)Xe signal intensity and heterogeneity were observed in the irradiated cohort but were not seen in the control group. PT signal was observed to increase in intensity and heterogeneity and RBC signal was observed to increase in heterogeneity in the irradiated right lungs, consistent with histology. CONCLUSION: Regional changes to PT and RBC (129)Xe signals are detectable 4 weeks following partial-lung irradiation in rats. Elsevier 2017-05-26 /pmc/articles/PMC5605308/ /pubmed/29114616 http://dx.doi.org/10.1016/j.adro.2017.05.005 Text en © 2017 The Authors on behalf of the American Society for Radiation Oncology http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Scientific Article
Zanette, Brandon
Stirrat, Elaine
Jelveh, Salomeh
Hope, Andrew
Santyr, Giles
Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration
title Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration
title_full Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration
title_fullStr Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration
title_full_unstemmed Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration
title_short Detection of regional radiation-induced lung injury using hyperpolarized (129)Xe chemical shift imaging in a rat model involving partial lung irradiation: Proof-of-concept demonstration
title_sort detection of regional radiation-induced lung injury using hyperpolarized (129)xe chemical shift imaging in a rat model involving partial lung irradiation: proof-of-concept demonstration
topic Scientific Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5605308/
https://www.ncbi.nlm.nih.gov/pubmed/29114616
http://dx.doi.org/10.1016/j.adro.2017.05.005
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