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Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging

The investigation of dedicated contrast agents for x-ray dark-field imaging, which exploits small-angle scattering at microstructures for contrast generation, is of strong interest in analogy to the common clinical use of high-atomic number contrast media in conventional attenuation-based imaging, s...

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Autores principales: Velroyen, Astrid, Bech, Martin, Tapfer, Arne, Yaroshenko, Andre, Müller, Mark, Paprottka, Philipp, Ingrisch, Michael, Cyran, Clemens C., Auweter, Sigrid D., Nikolaou, Konstantin, Reiser, Maximilian F., Pfeiffer, Franz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4489901/
https://www.ncbi.nlm.nih.gov/pubmed/26134130
http://dx.doi.org/10.1371/journal.pone.0129512
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author Velroyen, Astrid
Bech, Martin
Tapfer, Arne
Yaroshenko, Andre
Müller, Mark
Paprottka, Philipp
Ingrisch, Michael
Cyran, Clemens C.
Auweter, Sigrid D.
Nikolaou, Konstantin
Reiser, Maximilian F.
Pfeiffer, Franz
author_facet Velroyen, Astrid
Bech, Martin
Tapfer, Arne
Yaroshenko, Andre
Müller, Mark
Paprottka, Philipp
Ingrisch, Michael
Cyran, Clemens C.
Auweter, Sigrid D.
Nikolaou, Konstantin
Reiser, Maximilian F.
Pfeiffer, Franz
author_sort Velroyen, Astrid
collection PubMed
description The investigation of dedicated contrast agents for x-ray dark-field imaging, which exploits small-angle scattering at microstructures for contrast generation, is of strong interest in analogy to the common clinical use of high-atomic number contrast media in conventional attenuation-based imaging, since dark-field imaging has proven to provide complementary information. Therefore, agents consisting of gas bubbles, as used in ultrasound imaging for example, are of particular interest. In this work, we investigate an experimental contrast agent based on microbubbles consisting of a polyvinyl-alcohol shell with an iron oxide coating, which was originally developed for multimodal imaging and drug delivery. Its performance as a possible contrast medium for small-animal angiography was examined using a mouse carcass to realistically consider attenuating and scattering background signal. Subtraction images of dark field, phase contrast and attenuation were acquired for a concentration series of 100%, 10% and 1.3% to mimic different stages of dilution in the contrast agent in the blood vessel system. The images were compared to the gold-standard iodine-based contrast agent Solutrast, showing a good contrast improvement by microbubbles in dark-field imaging. This study proves the feasibility of microbubble-based dark-field contrast-enhancement in presence of scattering and attenuating mouse body structures like bone and fur. Therefore, it suggests a strong potential of the use of polymer-based microbubbles for small-animal dark-field angiography.
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spelling pubmed-44899012015-07-15 Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging Velroyen, Astrid Bech, Martin Tapfer, Arne Yaroshenko, Andre Müller, Mark Paprottka, Philipp Ingrisch, Michael Cyran, Clemens C. Auweter, Sigrid D. Nikolaou, Konstantin Reiser, Maximilian F. Pfeiffer, Franz PLoS One Research Article The investigation of dedicated contrast agents for x-ray dark-field imaging, which exploits small-angle scattering at microstructures for contrast generation, is of strong interest in analogy to the common clinical use of high-atomic number contrast media in conventional attenuation-based imaging, since dark-field imaging has proven to provide complementary information. Therefore, agents consisting of gas bubbles, as used in ultrasound imaging for example, are of particular interest. In this work, we investigate an experimental contrast agent based on microbubbles consisting of a polyvinyl-alcohol shell with an iron oxide coating, which was originally developed for multimodal imaging and drug delivery. Its performance as a possible contrast medium for small-animal angiography was examined using a mouse carcass to realistically consider attenuating and scattering background signal. Subtraction images of dark field, phase contrast and attenuation were acquired for a concentration series of 100%, 10% and 1.3% to mimic different stages of dilution in the contrast agent in the blood vessel system. The images were compared to the gold-standard iodine-based contrast agent Solutrast, showing a good contrast improvement by microbubbles in dark-field imaging. This study proves the feasibility of microbubble-based dark-field contrast-enhancement in presence of scattering and attenuating mouse body structures like bone and fur. Therefore, it suggests a strong potential of the use of polymer-based microbubbles for small-animal dark-field angiography. Public Library of Science 2015-07-02 /pmc/articles/PMC4489901/ /pubmed/26134130 http://dx.doi.org/10.1371/journal.pone.0129512 Text en © 2015 Velroyen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Velroyen, Astrid
Bech, Martin
Tapfer, Arne
Yaroshenko, Andre
Müller, Mark
Paprottka, Philipp
Ingrisch, Michael
Cyran, Clemens C.
Auweter, Sigrid D.
Nikolaou, Konstantin
Reiser, Maximilian F.
Pfeiffer, Franz
Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging
title Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging
title_full Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging
title_fullStr Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging
title_full_unstemmed Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging
title_short Ex Vivo Perfusion-Simulation Measurements of Microbubbles as a Scattering Contrast Agent for Grating-Based X-Ray Dark-Field Imaging
title_sort ex vivo perfusion-simulation measurements of microbubbles as a scattering contrast agent for grating-based x-ray dark-field imaging
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4489901/
https://www.ncbi.nlm.nih.gov/pubmed/26134130
http://dx.doi.org/10.1371/journal.pone.0129512
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