首页> 外文期刊>Cardiovascular engineering and technology >Computational Modelling of In Vitro Set-Ups for Peripheral Self-Expanding Nitinol Stents: The Importance of Stent-Wall Interaction in the Assessment of the Fatigue Resistance
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Computational Modelling of In Vitro Set-Ups for Peripheral Self-Expanding Nitinol Stents: The Importance of Stent-Wall Interaction in the Assessment of the Fatigue Resistance

机译:外周自扩张镍钛诺支架的体外装置的计算模型:支架-墙相互作用在评估抗疲劳性中的重要性

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摘要

Although the number of fractured stents in the femoro-popliteal district was largely reduced using second-generation devices, remarkable differences still exist among various products. In vitro testing offers a valid tool to comparatively assess the risk of fatigue fracture of different devices. However, there are no standardized methodologies for bench testing under the complex biomechanical environment of the femoro-popliteal district. A computational approach was used in the present study to investigate the fatigue testing conditions adopted in the in vitro studies to increase the understanding of the Nitinol stents fatigue behaviour, by focusing on the role of the stent-wall interaction. The finite element method was used coupled to fatigue analysis to investigate the behaviour of commercial devices during in vitro tests. Two peripheral stents were chosen for the analyses for which conflicting results are found in literature. Stent models were subjected to axial compression and bending either alone in the fully-expanded configuration or after their deployment in a silicone tube resembling the presence of the artery. Results indicate that the two testing conditions investigated produce quite a different fatigue behaviour both in terms of constant-life diagram and strain distribution in the stents. In particular, the results highlight that oversizing influence the fatigue behaviour of the devices with an effect on both the mean and amplitude values of the strain induced in the stents. Comparison with a fatigue limit typical for Nitinol indicates good agreement with the experimental results and confirms the validity of the adopted methodology. Stent oversizing plays an important role in determining the fatigue response of the devices and cannot be disregarded to assess the fatigue performance of Nitinol stents during in vitro tests. Moreover, the different behaviour found for the two stent models suggests that a careful stent design can improve the fatigue performance of these devices.
机译:尽管使用第二代装置大大减少了股pop区的支架破裂数量,但各种产品之间仍然存在显着差异。体外测试提供了一种有效的工具,可以比较评估不同设备的疲劳断裂风险。但是,在股-区复杂的生物力学环境下,尚无用于台架测试的标准化方法。在本研究中,采用一种计算方法来研究在体外研究中采用的疲劳测试条件,以通过关注支架-壁相互作用的作用来增加对镍钛诺支架疲劳行为的了解。有限元方法被用于疲劳分析,以研究商用设备在体外测试中的行为。选择两个外围支架进行分析,结果在文献中发现矛盾的结果。支架模型在完全展开的构型中或在类似于动脉的存在的硅树脂管中展开后,都受到轴向压缩和弯曲。结果表明,所研究的两种测试条件在恒定寿命图和支架中的应变分布方面都产生了完全不同的疲劳行为。尤其是,结果表明,尺寸过大会影响设备的疲劳行为,从而影响支架中产生的应变的平均值和幅度值。与镍钛诺典型的疲劳极限进行比较表明与实验结果吻合良好,并证实了所采用方法的有效性。支架尺寸过大在确定设备的疲劳响应中起着重要作用,在体外测试过程中不可忽视评估镍钛诺支架的疲劳性能。此外,对于两种支架模型发现的不同行为表明,仔细的支架设计可以改善这些设备的疲劳性能。

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