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November 4, 2023FluidsOpen Access

The review highlights that FSI modeling, utilizing computational fluid dynamics and finite element analysis, is an effective tool for predicting hemodynamic parameters, evaluating treatment options, and optimizing surgical outcomes in aortic valve surgery.

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Why the study?

Understanding and modeling fluid-structure interaction in aortic valve dynamics is required to design artificial valves, predict failure, and improve surgical and interventional treatments.

Design

Literature review

Authors

AKAlex G. KuchumovPerm National Research Polytechnic UniversityAMAnastasiya MakashovaPerm National Research Polytechnic UniversitySVS.V. VladimirovSirius University of Science and Technology

Discussion

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Overview

FSI modeling may aid aortic valve surgical planning; leaves open prospective validation before routine adoption.

Structured PICO

I
Intervention
Fluid-structure interaction (FSI) modeling and simulation

Fluid-structure interaction modeling provides predictive capabilities that can improve surgical planning and outcomes for aortic valve interventions.

Cite This Study

Kuchumov et al. (2023) studied this question.

synapsesocial.com/papers/69d5731c9d980f6498ccb2bdhttps://doi.org/10.3390/fluids8110295
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Fluid-structure interaction of heart valve dynamics in comparison to finite-element analysis2018 · 12 citations
  2. 2Fluid-structure interaction simulation of mechanical aortic valves: a narrative review exploring its role in total product life cycle2024 · 12 citations
  3. 3Verification of a Fluid–Structure Interaction Model for Aortic Stenosis Through Comparison With In Vitro Experiments2026
  4. 4A Review of Fluid-Structure Interaction Simulations of Prosthetic Heart Valves2015 · 32 citations
  5. 5State-of-the-art numerical fluid–structure interaction methods for aortic and mitral heart valves simulations: A review2021 · 43 citations