Eccentric stenosis of the carotid artery associated with ipsilateral cerebrovascular events
1Cerebrovascular Division, Department of Medicine, National Cardiovascular Center, Suita, Osaka, Japan.
Insights
Eccentric carotid artery stenosis, unlike concentric stenosis, significantly increases the risk of ipsilateral cerebrovascular events, including ischemic stroke. This finding highlights the importance of plaque morphology in predicting stroke risk.
Area of Science:
- Vascular Surgery
- Neurology
- Cardiology
Background:
- Coronary artery eccentric stenosis is linked to plaque disruption and acute coronary syndrome.
- The role of carotid artery eccentric stenosis in cerebrovascular events requires further investigation.
Purpose of the Study:
- To determine if eccentric stenosis of the carotid artery contributes to cerebrovascular events.
- To compare cerebrovascular event occurrence between eccentric and concentric carotid artery stenosis.
Main Methods:
- Duplex carotid ultrasonography was performed on 512 internal carotid arteries from 441 patients with >70% area stenosis.
- An eccentricity index was calculated using maximal (A) and minimal (B) wall thicknesses: (A-B)/A.
- Eccentric stenosis was defined as an index in the upper quartile (>0.69), while concentric was in the lowest quartile (<0.69).
Main Results:
- Eccentric stenosis was independently associated with recent cerebrovascular events (OR=2.76; 95% CI=1.19-6.40).
- Cerebrovascular events occurred more frequently in the eccentric stenosis group (13.5%) compared to the concentric group (5.5%; P=.013).
- This association was more pronounced for events presumed to be of carotid arterial origin (P=.005).
Conclusions:
- Eccentric carotid artery plaque is associated with a significantly higher incidence of ipsilateral cerebrovascular events in patients with >70% stenosis.
- Plaque morphology, specifically eccentricity, is a crucial factor in predicting stroke risk in severe carotid stenosis.
Background And Purpose:
Eccentric stenosis of the coronary artery is associated with plaque disruption and acute coronary syndrome. The purpose of the present study was to determine whether eccentric stenosis of the carotid artery contributes to cerebrovascular events.
Materials And Methods:
Of 6859 patients with vascular diseases who underwent duplex carotid ultrasonography, we studied 512 internal carotid arteries in 441 patients who had a maximum area stenosis at or more than 70%, which corresponds with approximately 50% or more by the NASCET method. The maximal (A) and minimal wall thicknesses (B) were measured on cross-sectional sonography images, and an eccentricity index was calculated using the following formula: (A - B)/A. Arteries in the lowest quartile of the eccentricity index (<0.69) were defined as having a concentric stenosis, whereas the others were defined as having eccentric stenosis. The underlying clinical characteristics and plaque morphologies, as well as the occurrence of ipsilateral ischemic stroke or transient ischemic attack in the preceding year, were compared between patients with eccentric and concentric stenosis.
Results:
Patient characteristics and plaque morphology were similar between the 2 groups. Cerebrovascular events occurred more frequently ipsilaterally to the artery with eccentric stenosis (13.5%) than to the artery with concentric stenosis (5.5%; P = .013); the difference was more evident when cerebrovascular events of presumed carotid arterial origin were assessed (P = .005). After adjusting for risk factors and plaque morphology, eccentric stenosis was independently related to the presence of recent cerebrovascular events (odds ratio = 2.76; 95% confidence interval = 1.19-6.40).
Conclusions:
In patients with an area carotid stenosis of 70% or more, eccentric plaque was associated with a significantly increased incidence of ipsilateral cerebrovascular events compared with patients with concentric stenosis.
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