Fluid-Structure Interaction in Coronary Stents: A Discrete Multiphysics Approach

Author:

Mohammed Adamu MusaORCID,Ariane Mostapha,Alexiadis AlessioORCID

Abstract

Stenting is a common method for treating atherosclerosis. A metal or polymer stent is deployed to open the stenosed artery or vein. After the stent is deployed, the blood flow dynamics influence the mechanics by compressing and expanding the structure. If the stent does not respond properly to the resulting stress, vascular wall injury or re-stenosis can occur. In this work, a Discrete Multiphysics modelling approach is used to study the mechanical deformation of the coronary stent and its relationship with the blood flow dynamics. The major parameters responsible for deforming the stent are sorted in terms of dimensionless numbers and a relationship between the elastic forces in the stent and pressure forces in the fluid is established. The blood flow and the stiffness of the stent material contribute significantly to the stent deformation and affect its rate of deformation. The stress distribution in the stent is not uniform with the higher stresses occurring at the nodes of the structure. From the relationship (correlation) between the elastic force and the pressure force, depending on the type of material used for the stent, the model can be used to predict whether the stent is at risk of fracture or not after deployment.

Publisher

MDPI AG

Subject

General Energy,General Engineering,General Chemical Engineering

Reference55 articles.

1. Risk Factors for Coronary Artery Disease;Brown,2021

2. Pathology of Atherosclerosis and Stenting

3. On the Assumption of Laminar Flow in Physiological Flows: Cerebral Aneurysms as an Illustrative Example;Evju,2015

4. Pathology of coronary atherosclerosis and thrombosis

5. Effect of small asymmetries on axisymmetric stenotic flow

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