Combined 18F-FDG PET-CT and DCE-MRI to assess inflammation and microvascularization in atherosclerotic plaques

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Abstract

BACKGROUND AND PURPOSE - Hallmarks of vulnerable atherosclerotic plaques are inflammation that can be assessed with fluorine-fluorodeoxyglucose positron emission tomography/computed tomography, and increased neovascularization that can be evaluated by dynamic contrast-enhanced-MRI. It remains unclear whether these parameters are correlated or represent independent imaging parameters. This study determines whether there is a correlation between inflammation and neovascularization in atherosclerotic carotid plaques. METHODS - A total of 58 patients with transient ischemic attack or minor stroke in the carotid territory and ipsilateral carotid artery stenosis of 30% to 69% were included. All patients underwent positron emission tomography/computed tomography and dynamic contrast-enhanced-MRI of the carotid plaque. Fluorine-fluorodeoxyglucose standard uptake values with target/background ratio were determined. Neovascularization was quantified by the mean (leakage) volume transfer constant K. Spearman rank correlation coefficients between target/background ratio and K were calculated. RESULTS - Images suitable for further analysis were obtained in 49 patients. A weak but significant positive correlation between target/background ratio and mean K (Spearman ρ=0.30 [P=0.035]) and 75th percentile K (Spearman ρ=0.29 [P=0.041]) was found. CONCLUSIONS - There is a weak but significant positive correlation between inflammation on positron emission tomography/computed tomography and neovascularization as assessed with dynamic contrast-enhanced-MRI. Future studies should investigate which imaging modality has the highest predictive value for recurrent stroke, as these are not interchangeable. © 2013 American Heart Association, Inc.

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Truijman, M. T. B., Kwee, R. M., Van Hoof, R. H. M., Hermeling, E., Van Oostenbrugge, R. J., Mess, W. H., … Kooi, M. E. (2013). Combined 18F-FDG PET-CT and DCE-MRI to assess inflammation and microvascularization in atherosclerotic plaques. Stroke, 44(12), 3568–3570. https://doi.org/10.1161/STROKEAHA.113.003140

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