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Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation

OBJECTIVES: The aim of this study was to: 1) provide tissue validation of quantitative T(2) mapping to measure plaque lipid content; and 2) investigate whether this technique could discern differences in plaque characteristics between symptom-related and non–symptom-related carotid plaques. BACKGROU...

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Autores principales: Chai, Joshua T., Biasiolli, Luca, Li, Linqing, Alkhalil, Mohammad, Galassi, Francesca, Darby, Chris, Halliday, Alison W., Hands, Linda, Magee, Timothy, Perkins, Jeremy, Sideso, Ed, Handa, Ashok, Jezzard, Peter, Robson, Matthew D., Choudhury, Robin P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5502905/
https://www.ncbi.nlm.nih.gov/pubmed/27743954
http://dx.doi.org/10.1016/j.jcmg.2016.06.013
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author Chai, Joshua T.
Biasiolli, Luca
Li, Linqing
Alkhalil, Mohammad
Galassi, Francesca
Darby, Chris
Halliday, Alison W.
Hands, Linda
Magee, Timothy
Perkins, Jeremy
Sideso, Ed
Handa, Ashok
Jezzard, Peter
Robson, Matthew D.
Choudhury, Robin P.
author_facet Chai, Joshua T.
Biasiolli, Luca
Li, Linqing
Alkhalil, Mohammad
Galassi, Francesca
Darby, Chris
Halliday, Alison W.
Hands, Linda
Magee, Timothy
Perkins, Jeremy
Sideso, Ed
Handa, Ashok
Jezzard, Peter
Robson, Matthew D.
Choudhury, Robin P.
author_sort Chai, Joshua T.
collection PubMed
description OBJECTIVES: The aim of this study was to: 1) provide tissue validation of quantitative T(2) mapping to measure plaque lipid content; and 2) investigate whether this technique could discern differences in plaque characteristics between symptom-related and non–symptom-related carotid plaques. BACKGROUND: Noninvasive plaque lipid quantification is appealing both for stratification in treatment selection and as a possible predictor of future plaque rupture. However, current cardiovascular magnetic resonance (CMR) methods are insensitive, require a coalesced mass of lipid core, and rely on multicontrast acquisition with contrast media and extensive post-processing. METHODS: Patients scheduled for carotid endarterectomy were recruited for 3-T carotid CMR before surgery. Lipid area was derived from segmented T(2) maps and compared directly to plaque lipid defined by histology. RESULTS: Lipid area (%) on T(2) mapping and histology showed excellent correlation, both by individual slices (R = 0.85, p < 0.001) and plaque average (R = 0.83, p < 0.001). Lipid area (%) on T(2) maps was significantly higher in symptomatic compared with asymptomatic plaques (31.5 ± 3.7% vs. 15.8 ± 3.1%; p = 0.005) despite similar degrees of carotid stenosis and only modest difference in plaque volume (128.0 ± 6.0 mm(3) symptomatic vs. 105.6 ± 9.4 mm(3) asymptomatic; p = 0.04). Receiver-operating characteristic analysis showed that T(2) mapping has a good ability to discriminate between symptomatic and asymptomatic plaques with 67% sensitivity and 91% specificity (area under the curve: 0.79; p = 0.012). CONCLUSIONS: CMR T(2) mapping distinguishes different plaque components and accurately quantifies plaque lipid content noninvasively. Compared with asymptomatic plaques, greater lipid content was found in symptomatic plaques despite similar degree of luminal stenosis and only modest difference in plaque volumes. This new technique may find a role in determining optimum treatment (e.g., providing an indication for intensive lipid lowering or by informing decisions of stents vs. surgery).
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spelling pubmed-55029052017-07-19 Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation Chai, Joshua T. Biasiolli, Luca Li, Linqing Alkhalil, Mohammad Galassi, Francesca Darby, Chris Halliday, Alison W. Hands, Linda Magee, Timothy Perkins, Jeremy Sideso, Ed Handa, Ashok Jezzard, Peter Robson, Matthew D. Choudhury, Robin P. JACC Cardiovasc Imaging Original Research OBJECTIVES: The aim of this study was to: 1) provide tissue validation of quantitative T(2) mapping to measure plaque lipid content; and 2) investigate whether this technique could discern differences in plaque characteristics between symptom-related and non–symptom-related carotid plaques. BACKGROUND: Noninvasive plaque lipid quantification is appealing both for stratification in treatment selection and as a possible predictor of future plaque rupture. However, current cardiovascular magnetic resonance (CMR) methods are insensitive, require a coalesced mass of lipid core, and rely on multicontrast acquisition with contrast media and extensive post-processing. METHODS: Patients scheduled for carotid endarterectomy were recruited for 3-T carotid CMR before surgery. Lipid area was derived from segmented T(2) maps and compared directly to plaque lipid defined by histology. RESULTS: Lipid area (%) on T(2) mapping and histology showed excellent correlation, both by individual slices (R = 0.85, p < 0.001) and plaque average (R = 0.83, p < 0.001). Lipid area (%) on T(2) maps was significantly higher in symptomatic compared with asymptomatic plaques (31.5 ± 3.7% vs. 15.8 ± 3.1%; p = 0.005) despite similar degrees of carotid stenosis and only modest difference in plaque volume (128.0 ± 6.0 mm(3) symptomatic vs. 105.6 ± 9.4 mm(3) asymptomatic; p = 0.04). Receiver-operating characteristic analysis showed that T(2) mapping has a good ability to discriminate between symptomatic and asymptomatic plaques with 67% sensitivity and 91% specificity (area under the curve: 0.79; p = 0.012). CONCLUSIONS: CMR T(2) mapping distinguishes different plaque components and accurately quantifies plaque lipid content noninvasively. Compared with asymptomatic plaques, greater lipid content was found in symptomatic plaques despite similar degree of luminal stenosis and only modest difference in plaque volumes. This new technique may find a role in determining optimum treatment (e.g., providing an indication for intensive lipid lowering or by informing decisions of stents vs. surgery). Elsevier 2017-07 /pmc/articles/PMC5502905/ /pubmed/27743954 http://dx.doi.org/10.1016/j.jcmg.2016.06.013 Text en © 2017 Elsevier Inc. All rights reserved. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research
Chai, Joshua T.
Biasiolli, Luca
Li, Linqing
Alkhalil, Mohammad
Galassi, Francesca
Darby, Chris
Halliday, Alison W.
Hands, Linda
Magee, Timothy
Perkins, Jeremy
Sideso, Ed
Handa, Ashok
Jezzard, Peter
Robson, Matthew D.
Choudhury, Robin P.
Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation
title Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation
title_full Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation
title_fullStr Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation
title_full_unstemmed Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation
title_short Quantification of Lipid-Rich Core in Carotid Atherosclerosis Using Magnetic Resonance T(2) Mapping: Relation to Clinical Presentation
title_sort quantification of lipid-rich core in carotid atherosclerosis using magnetic resonance t(2) mapping: relation to clinical presentation
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5502905/
https://www.ncbi.nlm.nih.gov/pubmed/27743954
http://dx.doi.org/10.1016/j.jcmg.2016.06.013
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