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October 3, 2025Computer Methods in Biomechanics & Biomedical EngineeringOpen Access

Computational fluid–structure interaction analysis of arterial hemodynamics for cardiovascular risk assessment

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Authors

HMHaïfa MahjoubKHKamran HassaniASAli Sheikhani

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Overview

This analysis demonstrates the effects of fluid-structure interaction on blood flow in arteries, suggesting improved cardiovascular risk assessment methods.

Key Points

  • Two-way coupling enhanced wall stress estimates by 30% over one-way coupling, indicating better modeling accuracy.
  • The computational model captured peak aortic velocities of 0.13 m/s, highlighting variations due to arterial branching.
  • High-viscosity conditions increased mechanical stress and displacement, pinpointing risk areas for cardiovascular diseases.
  • Complex FSI modeling shows promise for advancing personalized prediction strategies in cardiovascular health.

Cite This Study

Mahjoub et al. (2025) studied this question.

synapsesocial.com/papers/68e02f2cf0e39f13e7fa1f94https://doi.org/10.1080/10255842.2025.2564341
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