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Updated: May 16, 2026

Optical Coherence Tomography Based Biomechanical Fluid-Structure Interaction Analysis of Coronary Atherosclerosis Progression
Published on: January 15, 2022
Flow recirculation zone length and shear rate are differentially affected by stenosis severity in human coronary
Ashkan Javadzadegan1, Andy S C Yong, Michael Chang
1Department of Mechanical Engineering, University of Sydney, Sydney, New South Wales, Australia.
Insights
Stenosis severity, not eccentricity, primarily determines flow recirculation and shear rate in coronary arteries. Stenosis severity strongly correlates with these factors, with recirculation length increasing significantly between 40-60% diameter stenosis.
Area of Science:
- Cardiovascular physiology
- Biomedical engineering
- Medical imaging
Background:
- Flow recirculation zones and shear rate are linked to thrombosis and atherogenesis.
- The interplay between stenosis severity and lesion eccentricity on these hemodynamic factors in coronary arteries is not fully understood.
Purpose of the Study:
- To investigate the impact of stenosis severity and lesion eccentricity on flow recirculation zones and peak shear rate in human coronary arteries.
- To clarify the dominant factor influencing these hemodynamic parameters in vivo.
Main Methods:
- Computational fluid dynamic (CFD) simulations were conducted on computer-generated models and 3-D reconstructions of patient coronary arteriograms.
- Simulations were performed under resting and hyperemic conditions.
- Boundary conditions were derived from direct pressure-temperature sensor guidewire measurements.
Main Results:
- In computer models, both stenosis severity and eccentricity correlated with recirculation length and shear rate.
- In patient-specific models, eccentricity increased recirculation and shear rate for similar stenosis severity.
- However, across all lesions, only stenosis severity significantly correlated with recirculation length and shear rate (P < 0.001).
- Stenosis severity showed an exponential relationship with peak shear and a sigmoidal relationship with recirculation length, with a threshold effect around 40-60% diameter stenosis.
Conclusions:
- Stenosis severity is the primary determinant of flow recirculation length and shear rate in coronary arteries.
- Flow recirculation is highly sensitive to intermediate stenosis severity changes (40-60% diameter stenosis).
- Lesion eccentricity plays a lesser role compared to stenosis severity in overall hemodynamic alterations.
Abstract:
Flow recirculation zones and shear rate are associated with distinct pathogenic biological pathways relevant to thrombosis and atherogenesis. The interaction between stenosis severity and lesion eccentricity in determining the length of flow recirculation zones and peak shear rate in human coronary arteries in vivo is unclear. Computational fluid dynamic simulations were performed under resting and hyperemic conditions on computer-generated models and three-dimensional (3-D) reconstructions of coronary arteriograms of 25 patients. Boundary conditions for 3-D reconstructions simulations were obtained by direct measurements using a pressure-temperature sensor guidewire. In the computer-generated models, stenosis severity and lesion eccentricity were strongly associated with recirculation zone length and maximum shear rate. In the 3-D reconstructions, eccentricity increased recirculation zone length and shear rate when lesions of the same stenosis severity were compared. However, across the whole population of coronary lesions, eccentricity did not correlate with recirculation zone length or shear rate (P = not signficant for both), whereas stenosis severity correlated strongly with both parameters (r = 0.97, P < 0.001, and r = 0.96, P < 0.001, respectively). Nonlinear regression analyses demonstrated that the relationship between stenosis severity and peak shear was exponential, whereas the relationship between stenosis severity and recirculation zone length was sigmoidal, with an apparent threshold effect, demonstrating a steep increase in recirculation zone length between 40% and 60% diameter stenosis. Increasing stenosis severity and lesion eccentricity can both increase flow recirculation and shear rate in human coronary arteries. Flow recirculation is much more sensitive to mild changes in the severity of intermediate stenoses than is peak shear.
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