Coronary arteries hemodynamics: effect of arterial geometry on hemodynamic parameters causing atherosclerosis

Kelvin K L Wong1,2, Jianhuang Wu3, Guiying Liu4,5

  • 1Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, 1068 Xueyuan Boulevard, Xili Nanshan, Shenzhen, 518055, China. kelvin.wong@siat.ac.cn.

Insights

High arterial curvature and stenosis disrupt blood flow, increasing atherosclerosis risk. Hemodynamic analysis of wall shear stress (WSS) and wall pressure gradient (WPG) in patient-specific coronary arteries aids in assessing this risk.

Area of Science:

  • Cardiovascular Science
  • Biomedical Engineering
  • Medical Imaging Analysis

Background:

  • Coronary arteries exhibit high curvatures, leading to disturbed blood flow patterns.
  • These disturbed flow patterns contribute to stenosis and atherosclerosis, reducing myocardial perfusion and causing ischemia or infarction.

Purpose of the Study:

  • To understand the hemodynamic mechanisms underlying atherosclerosis in coronary arteries.
  • To analyze the impact of arterial curvature and stenosis on blood flow parameters.
  • To provide a method for assessing atherosclerosis risk using patient-specific hemodynamic analysis.

Main Methods:

  • Performed hemodynamic analysis on idealized coronary artery models with realistic curvatures and stenosis.
  • Computed pressure drop, wall shear stress (WSS), and wall pressure gradient (WPG) in idealized models.
  • Determined WSS and WPG distributions in four patient-specific stenotic right coronary arteries (RCAs) reconstructed from CT imaging.

Main Results:

  • Identified associations between geometric parameters (curvedness, stenosis) and hemodynamic parameters (pressure drop, WSS, WPG) in idealized models.
  • Observed high WSS and WPG regions at stenoses and on the inner walls of arterial curves in patient-specific RCAs.
  • Demonstrated the influence of curvilinearity and narrowing on computed WSS and WPG in actual coronary arteries.

Conclusions:

  • The study offers insights into the causative mechanisms of atherosclerosis in coronary arteries.
  • Simulation of blood flow and determination of WSS and WPG can serve as a medical assessment tool for atherosclerosis risk.
  • Findings are crucial for cardiologists to provide timely patient care and preventive measures against coronary complications.

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