Hemodynamic Risk Factors for the Development of Carotid Stenosis in Patients with Unilateral Carotid Stenosis
Shunichi Fukuda1, Yuji Shimogonya2, Naohiro Yonemoto3
1Department of Neurosurgery, National Hospital Organization Kyoto Medical Center, Kyoto, Japan.
Insights
Predicting carotid stenosis is challenging. Computational fluid dynamics revealed that wall shear stress (WSS) disturbances and specific artery diameter ratios are key hemodynamic risks for developing severe carotid stenosis.
Area of Science:
- Cardiovascular research
- Medical imaging analysis
- Hemodynamics
Background:
- Predicting carotid stenosis progression using traditional risk factors remains difficult.
- Investigating hemodynamic risks, specifically wall shear stress (WSS) disturbances, offers a novel approach to understanding stenosis development.
Purpose of the Study:
- To analyze hemodynamic risks associated with carotid stenosis using computational fluid dynamics (CFD).
- To identify specific hemodynamic and morphologic factors that correlate with the degree of carotid stenosis.
Main Methods:
- Utilized CFD analysis on 3D computed tomography angiographic images from 59 patients with unilateral carotid stenosis.
- Artificially reproduced pre-stenosis vessel shapes and performed multivariate regression analysis, adjusting for known risk factors.
Main Results:
- Observed higher WSS disturbance metrics and lower WSS magnitude metrics at and distal to carotid bifurcations post-plaque removal.
- Found significant negative correlations between stenosis degree and WSS disturbance ratios, and positive correlations with WSS magnitude ratios.
Conclusions:
- Rapid increases in WSS toward bifurcations and decreases in WSS disturbance distally are significant predictors of future severe stenosis.
- Lower external to common carotid artery diameter ratios are also linked to increased stenosis risk.
- Patients with identified hemodynamic risks require stricter disease control and closer imaging surveillance.
Background:
It is difficult to predict the development of carotid stenosis by means of the known risk factors. Using a computational fluid dynamics analysis, we examined the hemodynamic risks for carotid stenosis, focusing on wall shear stress (WSS) disturbances.
Methods:
In 59 patients with unilateral carotid stenosis, the plaque was removed from the original three-dimensional computed tomography angiographic images, and the vessel shape before stenosis was artificially reproduced. A multivariate regression analysis was performed to determine the associations between the degree of area stenosis and hemodynamic and morphologic factors after adjustment for 6 known risk factors.
Results:
Metrics for WSS disturbances were higher at and distal to a bifurcation in the carotid arteries after plaque removal compared with the normal carotid arteries, and metrics for WSS magnitudes were lower. In the plaque-removed arteries, the degree of stenosis was significantly negatively correlated with the ratio of stenotic to distal values of metrics for WSS disturbances and the diameter ratio of the external to common carotid artery, and positively correlated with the ratio of proximal to stenotic values of metrics for WSS magnitudes.
Conclusions:
Rapid increases in WSS from the common carotid artery toward the bifurcation, rapid decreases in WSS disturbance from the bifurcation toward the internal carotid artery, and lower diameter ratio of the external to common carotid artery are more likely than other risk factors to cause future severe stenosis. In patients with these hemodynamic risks, underlying diseases should be controlled more strictly, with imaging examinations at shorter intervals.
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