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PMID: 40652753 Published · ppublish English

Computational methods used to investigate atherosclerosis progression in coronary arteries: structural FEA, CFD or FSI.

Lissoni V, Luraghi G, Stefanati M, Rodriguez Matas JF, Migliavacca F

Abstract

In recent years, computational simulations have emerged as valuable tools for the evaluation of atherosclerosis progression in coronary anatomies, although only a few studies have utilized more realistic Fluid-Structure Interaction (FSI) simulations. This work aims to compare the results of Computational Fluid Dynamics (CFD), Structural Finite Element Analysis (structural FEA) and FSI simulations in order to assess differences in plaque progression indices estimation. We performed structural FEA, CFD and FSI on five patient-specific epicardial coronary anatomies using the commercial software LS-Dyna. To account for the vessel pre-stress, the zero-pressure configuration was calculated for each anatomy with an inverse elastostatic algorithm. CFD, structural FEA and FSI simulations were performed applying boundary conditions based on physiological values. The comparison between structural FEA and FSI showed similar stress distribution and vessel expansions, with differences found only in the distal parts of the coronaries, where pressure reduction due to pressure loss affects the vessel walls. The elastic walls of the coronaries impact blood flow, resulting in a more disturbed flow. However, time averaged wall shear stress (TAWSS) and oscillatory shear index (OSI) distributions are similar across each coronary between CFD and FSI; TAWSS is slightly higher in CFD while OSI peaks are higher in FSI. In conclusion, given the significantly higher computational costs of FSI, we believe that CFD and structural FEA offer a more practical and cost-effective approach, providing results comparable to those of FSI, making them preferable options.

Keywords
Atherosclerosis Computational fluid dynamics Coronary hemodynamics Coronary simulation runtime Fluid-structure interaction Pre-stress Structural FEA
MeSH 主题词
Humans Coronary Vessels/physiopathology,pathology,diagnostic imaging Finite Element Analysis Computer Simulation Hydrodynamics Atherosclerosis/physiopathology,pathology,diagnostic imaging Disease Progression Coronary Artery Disease/physiopathology,diagnostic imaging,pathology Stress, Mechanical Algorithms Models, Cardiovascular
Article Info
Journal
Computer methods and programs in biomedicine
Abbr.
Comput Methods Programs Biomed
ISSN
1872-7565
Corresponding email
Published
2025-10-00
Language
English
Country/Region
Ireland
NLM ID
8506513
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