Advanced MRI for carotid plaque imaging
Navneet Singh1, Alan R Moody1, Idan Roifman2
1Department of Medical Imaging, Sunnybrook Health Sciences Centre, University of Toronto, 2075 Bayview Avenue, Room AG56b, Toronto, ON, M4N 3M5, Canada.
Insights
High-resolution magnetic resonance imaging (MRI) accurately identifies carotid artery plaque components and burden. This technique shows potential as a reliable imaging biomarker for predicting future cardiovascular events.
Area of Science:
- Cardiovascular Imaging
- Biomarkers
- Neuroimaging
Background:
- Atherosclerosis is a major cause of death, leading to heart attack and stroke.
- Carotid artery plaque is a key indicator of systemic atherosclerosis and future neuroischemic events.
Purpose of the Study:
- To evaluate the utility of high-resolution magnetic resonance imaging (MRI) for characterizing atherosclerotic plaque in the carotid arteries.
- To assess the potential of carotid MRI as an imaging biomarker for cardiovascular risk assessment.
Main Methods:
- Utilized dedicated hardware for high-resolution imaging.
- Employed a multi-sequence MRI protocol including T1, T2, proton-density, and fat-saturation.
- Used advanced post-processing software for quantitative plaque analysis.
Main Results:
- High-resolution MRI accurately delineated atherosclerotic plaque components and total plaque burden.
- Imaging findings correlated well with surgical specimens, confirming plaque feature differentiation.
- Identified plaque components like thin fibrous cap, large necrotic core, and intraplaque hemorrhage as markers of neuroischemic events.
Conclusions:
- High-resolution carotid MRI is a highly accurate and reliable technique for plaque characterization.
- Carotid plaque detected by MRI may indicate coronary artery plaque burden, suggesting systemic disease.
- Carotid MRI demonstrates significant potential as an imaging biomarker for assessing future cardiovascular risk.
Abstract:
Atherosclerosis is the ubiquitous underling pathological process that manifests in heart attack and stroke, cumulating in the death of one in three North American adults. High-resolution magnetic resonance imaging (MRI) is able to delineate atherosclerotic plaque components and total plaque burden within the carotid arteries. Using dedicated hardware, high resolution images can be obtained. Combining pre- and post-contrast T1, T2, proton-density, and magnetization-prepared rapid acquisition gradient echo weighted fat-saturation imaging, plaque components can be defined. Post-processing software allows for semi- and fully automated quantitative analysis. Imaging correlation with surgical specimens suggests that this technique accurately differentiates plaque features. Total plaque burden and specific plaque components such as a thin fibrous cap, large fatty or necrotic core and intraplaque hemorrhage are accepted markers of neuroischemic events. Given the systemic nature of atherosclerosis, emerging science suggests that the presence of carotid plaque is also an indicator of coronary artery plaque burden, although the preliminary data primarily involves patients with stable coronary disease. While the availability and cost-effectiveness of MRI will ultimately be important determinants of whether carotid MRI is adopted clinically in cardiovascular risk assessment, the high accuracy and reliability of this technique suggests that it has potential as an imaging biomarker of future risk.
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