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Published on: January 13, 2012
Carotid plaque morphology and cerebrovascular events
G Carra1, A Visonà, A Bonanome
1Department of Vascular Medicine, Internal Medicine and General Medicine, University of Padua, Civil Hospital, Castelfranco Veneto (TV), Italy. cumei1@ulssasolo.ven.it
Insights
Carotid stenosis progression and plaque characteristics like irregular surfaces predict cerebrovascular events. Monitoring these factors is crucial for managing stroke risk in asymptomatic patients.
Area of Science:
- Vascular Neurology
- Cerebrovascular Disease
- Medical Imaging
Background:
- Plaque morphology is increasingly recognized alongside stenosis degree for identifying cerebrovascular event risk.
- Identifying high-risk plaques aids in selecting patients for closer surveillance and intervention.
Purpose of the Study:
- To investigate the relationship between carotid plaque morphology, stenosis progression, and new cerebrovascular events.
- To determine key predictors of stroke risk in asymptomatic individuals.
Main Methods:
- A cohort of 230 asymptomatic patients underwent follow-up carotid duplex scans.
- Evaluation included degree and progression of internal carotid artery (ICA) stenosis and plaque morphology.
- Correlation analysis was performed between imaging findings and neurological events.
Main Results:
- During follow-up (median 32 months), 7% experienced ischemic neurological events, with 1.7% being stroke.
- Neurological events correlated with stenosis degree, progression, non-homogeneous echographic appearance, and irregular surface.
- Plaque progression was the strongest predictor of new neurological symptoms, with 78% changing from homogeneous to non-homogeneous patterns.
Conclusions:
- Internal carotid artery (ICA) stenosis is generally benign, with few strokes directly linked to stenosis.
- Key predictors of cerebrovascular events, beyond stenosis degree, include stenosis progression, irregular plaque surface, and non-homogeneous echographic appearance.
Aim:
Beside the degree of stenosis, plaque morphology obtained by the B mode ultrasound technique has been considered to define the plaque at risk for cerebrovascular events, and a subset of patients who deserve more strict surveillance. Our aim was to evaluate the relationship between plaque morphology, progression of stenosis, and the development of new cerebrovascular events.
Methods:
We followed up by carotid duplex scan 230 asymptomatic patients, evaluating the degree and progression of internal carotid (ICA) stenoses and plaque morphology of the atherosclerotic lesions.
Results:
During the follow-up period (median 32 month, range 6-125 months) 7% of patients developed ischemic neurological events of which 1.7% was a stroke. Of these events, only 5.7% correlated with carotid lesions. The new neurological events correlated with the degree and progression of stenoses, with a non homogeneous echographic appearance and irregular surface. The progression of the degree of stenoses was the parameter that correlated the most with the development of new neurologic symptoms. Nevertheless, the lesions that progressed modified their echographic pattern from homogeneous to non homogeneous in 78% of cases. Irregular surface and high degree of stenoses more than the baseline echographic pattern seem to correlate with plaque progression.
Conclusion:
Our follow-up study confirmed that ICA stenosis is a benign condition: very few strokes clearly correlated to the stenosis were observed. Nevertheless, the major predictors of risk for cerebrovascular events, besides the degree of stenoses, are the progression of the degree of stenosis, irregular surface and non-homogeneous echographic appearance.
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