Prediction of guidewire-induced aortic deformations during EVAR: a finite element and in vitro study

Author:

Emendi Monica,Støverud Karen H.,Tangen Geir A.,Ulsaker Håvard,Manstad-H Frode,Di Giovanni Pierluigi,Dahl Sigrid K.,Langø Thomas,Prot Victorien

Abstract

Introduction and aims: During an Endovascular Aneurysm Repair (EVAR) procedure a stiff guidewire is inserted from the iliac arteries. This induces significant deformations on the vasculature, thus, affecting the pre-operative planning, and the accuracy of image fusion. The aim of the present work is to predict the guidewire induced deformations using a finite element approach validated through experiments with patient-specific additive manufactured models. The numerical approach herein developed could improve the pre-operative planning and the intra-operative navigation.Material and methods: The physical models used for the experiments in the hybrid operating room, were manufactured from the segmentations of pre-operative Computed Tomography (CT) angiographies. The finite element analyses (FEA) were performed with LS-DYNA Explicit. The material properties used in finite element analyses were obtained by uniaxial tensile tests. The experimental deformed configurations of the aorta were compared to those obtained from FEA. Three models, obtained from Computed Tomography acquisitions, were investigated in the present work: A) without intraluminal thrombus (ILT), B) with ILT, C) with ILT and calcifications.Results and discussion: A good agreement was found between the experimental and the computational studies. The average error between the final in vitro vs. in silico aortic configurations, i.e., when the guidewire is fully inserted, are equal to 1.17, 1.22 and 1.40 mm, respectively, for Models A, B and C. The increasing trend in values of deformations from Model A to Model C was noticed both experimentally and numerically. The presented validated computational approach in combination with a tracking technology of the endovascular devices may be used to obtain the intra-operative configuration of the vessels and devices prior to the procedure, thus limiting the radiation exposure and the contrast agent dose.

Funder

Horizon 2020

Publisher

Frontiers Media SA

Subject

Physiology (medical),Physiology

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Towards a reduced order model for EVAR planning and intra-operative navigation;Medical Engineering & Physics;2024-09

2. Aortic roadmapping during EVAR: a combined FEM–EM tracking feasibility study;International Journal of Computer Assisted Radiology and Surgery;2024-06-02

3. Fabrication of deformable patient-specific AAA models by material casting techniques;Frontiers in Cardiovascular Medicine;2023-09-11

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