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Computational analysis of stenosis geometry effects on right coronary hemodynamics. | LitMetric

AI Article Synopsis

  • Coronary artery disease (CAD) is a serious heart problem that can lead to heart attacks and is a common cause of death in western countries.
  • The study looked at different shapes of narrowed arteries (called stenosis) and how they affect blood flow in the heart.
  • It was found that an elliptical shape is the worst for blood flow, while a parabolic shape is better, but the size of the opening (lumen) is the most important factor in how blood flows.

Article Abstract

Coronary artery disease (CAD) is one of the most frequent causes of death in western countries. It is characterized by the presence of coronary artery stenosis that can be flow-limiting or susceptible to rupture, triggering intracoronary thrombosis and -consequently- an acute myocardial infarction. For these reasons, hemodynamic alterations associated to the presence of coronary stenosis are of large relevance. Aim of this study was to numerically investigate the effect of stenosis geometry on hemodynamics, comparing three different shapes with an equivalent stenotic lumen. A right coronary artery (RCA) was reconstructed from the angiogram of a patient. Flow pattern analyses were performed using the computational fluid dynamic (CFD) approach, showing that the worst stenosis geometry is the elliptical one, characterized by areas with stasis, multidirectional velocity and high wall shear stress (WSS). On the other hand, the least dangerous stenosis is the parabolic one. However, the strongest predictor of pressure drop is not geometry but the minimal lumen area. In conclusion, while the minimal lumen area is associated to the trans-stenotic pressure drop, stenosis geometry has a significant impact on translesional flow pattern and WSS.

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Source
http://dx.doi.org/10.1109/EMBC.2015.7318528DOI Listing

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