From Bench Testing to Virtual Implantation: A Comparative Study Between Poly-l-Lactic Acid and Nickel-Titanium Braided Stents.

IF 2.4 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Agnese Lucchetti, Levi G Juhl, Anna Corti, Alissa Zaccaria, Thomas Gries, Claudio Chiastra, Ted J Vaughan, Dario Carbonaro
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Abstract

Bioresorbable braided stents represent a promising solution for the treatment of peripheral artery disease, providing temporary mechanical support before gradually degrading into biocompatible byproducts. Previous studies have highlighted their lower mechanical performance compared to permanent metallic stents. However, their implantation in lower limb arteries remains unexplored, leaving uncertainty on whether their mechanical performance is sufficient for effective treatment. The aim of the present study was to evaluate the performance of a poly-l-lactic acid (PLLA) braided stent for the treatment of lower limb arteries through in silico analysis and compare it with that of a nickel-titanium (NiTi) device. A finite element (FE) model of the PLLA stent was implemented and validated against experimental bench test data. Subsequently, the mechanical characteristics of the PLLA device were compared to those of a NiTi stent, with identical geometrical features, through FE simulations of two bench tests (i.e., parallel plate compression and crimping tests). Finally, a virtual implantation procedure of both devices in a patient-specific lower limb artery was conducted by FE analysis, accounting for three different arterial wall conditions, to compare the stents' treatment performance. The FE analysis of the bench tests confirmed that the PLLA stent generated much lower force magnitudes than the NiTi device. Moreover, the virtual implantation procedure indicated the limited short-term performance of the PLLA stent for the treatment of peripheral artery disease in terms of risk for permanent deformations, low lumen gain, high values of incomplete stent apposition and a nonuniform distribution of contact pressure on the arterial wall.

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从台架试验到虚拟植入:聚乳酸与镍钛编织支架的比较研究。
生物可吸收的编织支架是治疗外周动脉疾病的一个很有前途的解决方案,在逐渐降解为生物相容的副产物之前提供暂时的机械支持。先前的研究强调,与永久性金属支架相比,它们的机械性能较低。然而,它们在下肢动脉中的植入仍未被探索,留下了它们的机械性能是否足以有效治疗的不确定性。本研究的目的是通过硅分析评估聚乳酸(PLLA)编织支架治疗下肢动脉的性能,并将其与镍钛(NiTi)装置进行比较。建立了PLLA支架的有限元模型,并通过台架试验数据进行了验证。随后,通过两个台架试验(即平行板压缩和卷曲试验)的有限元模拟,比较了几何特征相同的PLLA装置与NiTi支架的力学特性。最后,考虑到三种不同的动脉壁状况,通过FE分析将两种装置虚拟植入患者特定的下肢动脉,比较支架的治疗效果。台架试验的有限元分析证实,PLLA支架产生的力量级远低于NiTi装置。此外,虚拟植入过程表明PLLA支架在治疗外周动脉疾病方面的短期性能有限,包括永久性变形的风险、低管腔增益、支架不完全贴置的高值以及动脉壁接触压力的不均匀分布。
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来源期刊
International Journal for Numerical Methods in Biomedical Engineering
International Journal for Numerical Methods in Biomedical Engineering ENGINEERING, BIOMEDICAL-MATHEMATICAL & COMPUTATIONAL BIOLOGY
CiteScore
4.50
自引率
9.50%
发文量
103
审稿时长
3 months
期刊介绍: All differential equation based models for biomedical applications and their novel solutions (using either established numerical methods such as finite difference, finite element and finite volume methods or new numerical methods) are within the scope of this journal. Manuscripts with experimental and analytical themes are also welcome if a component of the paper deals with numerical methods. Special cases that may not involve differential equations such as image processing, meshing and artificial intelligence are within the scope. Any research that is broadly linked to the wellbeing of the human body, either directly or indirectly, is also within the scope of this journal.
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