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Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T

Accurate quantification and characterization of atherosclerotic plaques with MRI requires high spatial resolution acquisitions with excellent image quality. The intrinsically better signal-to-noise ratio (SNR) at high-field clinical 7T compared to the widely employed lower field strengths of 1.5 and...

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Autores principales: Willemink, Martin J., Coolen, Bram F., Dyvorne, Hadrien, Robson, Philip M., Bander, Ilda, Ishino, Seigo, Pruzan, Alison, Sridhar, Arthi, Zhang, Bei, Balchandani, Priti, Mani, Venkatesh, Strijkers, Gustav J., Nederveen, Aart J., Leiner, Tim, Fayad, Zahi A., Mulder, Willem J. M., Calcagno, Claudia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7735577/
https://www.ncbi.nlm.nih.gov/pubmed/33315867
http://dx.doi.org/10.1371/journal.pone.0241779
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author Willemink, Martin J.
Coolen, Bram F.
Dyvorne, Hadrien
Robson, Philip M.
Bander, Ilda
Ishino, Seigo
Pruzan, Alison
Sridhar, Arthi
Zhang, Bei
Balchandani, Priti
Mani, Venkatesh
Strijkers, Gustav J.
Nederveen, Aart J.
Leiner, Tim
Fayad, Zahi A.
Mulder, Willem J. M.
Calcagno, Claudia
author_facet Willemink, Martin J.
Coolen, Bram F.
Dyvorne, Hadrien
Robson, Philip M.
Bander, Ilda
Ishino, Seigo
Pruzan, Alison
Sridhar, Arthi
Zhang, Bei
Balchandani, Priti
Mani, Venkatesh
Strijkers, Gustav J.
Nederveen, Aart J.
Leiner, Tim
Fayad, Zahi A.
Mulder, Willem J. M.
Calcagno, Claudia
author_sort Willemink, Martin J.
collection PubMed
description Accurate quantification and characterization of atherosclerotic plaques with MRI requires high spatial resolution acquisitions with excellent image quality. The intrinsically better signal-to-noise ratio (SNR) at high-field clinical 7T compared to the widely employed lower field strengths of 1.5 and 3T may yield significant improvements to vascular MRI. However, 7T atherosclerosis imaging also presents specific challenges, related to local transmit coils and B1 field inhomogeneities, which may overshadow these theoretical gains. We present the development and evaluation of 3D, black-blood, ultra-high resolution vascular MRI on clinical high-field 7T in comparison lower-field 3T. These protocols were applied for in vivo imaging of atherosclerotic rabbits, which are often used for development, testing, and validation of translatable cardiovascular MR protocols. Eight atherosclerotic New Zealand White rabbits were imaged on clinical 7T and 3T MRI scanners using 3D, isotropic, high (0.6(3) mm(3)) and ultra-high (0.4(3) mm(3)) spatial resolution, black-blood MR sequences with extensive spatial coverage. Following imaging, rabbits were sacrificed for validation using fluorescence imaging and histology. Image quality parameters such as SNR and contrast-to-noise ratio (CNR), as well as morphological and functional plaque measurements (plaque area and permeability) were evaluated at both field strengths. Using the same or comparable imaging parameters, SNR and CNR were in general higher at 7T compared to 3T, with a median (interquartiles) SNR gain of +40.3 (35.3–80.1)%, and a median CNR gain of +68.1 (38.5–95.2)%. Morphological and functional parameters, such as vessel wall area and permeability, were reliably acquired at 7T and correlated significantly with corresponding, widely validated 3T vessel wall MRI measurements. In conclusion, we successfully developed 3D, black-blood, ultra-high spatial resolution vessel wall MRI protocols on a 7T clinical scanner. 7T imaging was in general superior to 3T with respect to image quality, and comparable in terms of plaque area and permeability measurements.
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spelling pubmed-77355772020-12-22 Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T Willemink, Martin J. Coolen, Bram F. Dyvorne, Hadrien Robson, Philip M. Bander, Ilda Ishino, Seigo Pruzan, Alison Sridhar, Arthi Zhang, Bei Balchandani, Priti Mani, Venkatesh Strijkers, Gustav J. Nederveen, Aart J. Leiner, Tim Fayad, Zahi A. Mulder, Willem J. M. Calcagno, Claudia PLoS One Research Article Accurate quantification and characterization of atherosclerotic plaques with MRI requires high spatial resolution acquisitions with excellent image quality. The intrinsically better signal-to-noise ratio (SNR) at high-field clinical 7T compared to the widely employed lower field strengths of 1.5 and 3T may yield significant improvements to vascular MRI. However, 7T atherosclerosis imaging also presents specific challenges, related to local transmit coils and B1 field inhomogeneities, which may overshadow these theoretical gains. We present the development and evaluation of 3D, black-blood, ultra-high resolution vascular MRI on clinical high-field 7T in comparison lower-field 3T. These protocols were applied for in vivo imaging of atherosclerotic rabbits, which are often used for development, testing, and validation of translatable cardiovascular MR protocols. Eight atherosclerotic New Zealand White rabbits were imaged on clinical 7T and 3T MRI scanners using 3D, isotropic, high (0.6(3) mm(3)) and ultra-high (0.4(3) mm(3)) spatial resolution, black-blood MR sequences with extensive spatial coverage. Following imaging, rabbits were sacrificed for validation using fluorescence imaging and histology. Image quality parameters such as SNR and contrast-to-noise ratio (CNR), as well as morphological and functional plaque measurements (plaque area and permeability) were evaluated at both field strengths. Using the same or comparable imaging parameters, SNR and CNR were in general higher at 7T compared to 3T, with a median (interquartiles) SNR gain of +40.3 (35.3–80.1)%, and a median CNR gain of +68.1 (38.5–95.2)%. Morphological and functional parameters, such as vessel wall area and permeability, were reliably acquired at 7T and correlated significantly with corresponding, widely validated 3T vessel wall MRI measurements. In conclusion, we successfully developed 3D, black-blood, ultra-high spatial resolution vessel wall MRI protocols on a 7T clinical scanner. 7T imaging was in general superior to 3T with respect to image quality, and comparable in terms of plaque area and permeability measurements. Public Library of Science 2020-12-14 /pmc/articles/PMC7735577/ /pubmed/33315867 http://dx.doi.org/10.1371/journal.pone.0241779 Text en © 2020 Willemink 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Willemink, Martin J.
Coolen, Bram F.
Dyvorne, Hadrien
Robson, Philip M.
Bander, Ilda
Ishino, Seigo
Pruzan, Alison
Sridhar, Arthi
Zhang, Bei
Balchandani, Priti
Mani, Venkatesh
Strijkers, Gustav J.
Nederveen, Aart J.
Leiner, Tim
Fayad, Zahi A.
Mulder, Willem J. M.
Calcagno, Claudia
Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T
title Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T
title_full Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T
title_fullStr Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T
title_full_unstemmed Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T
title_short Ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7T
title_sort ultra-high resolution, 3-dimensional magnetic resonance imaging of the atherosclerotic vessel wall at clinical 7t
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7735577/
https://www.ncbi.nlm.nih.gov/pubmed/33315867
http://dx.doi.org/10.1371/journal.pone.0241779
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