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首页> 外文期刊>Journal of Functional Biomaterials >Computational Modeling to Predict Fatigue Behavior of NiTi Stents: What Do We Need?
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Computational Modeling to Predict Fatigue Behavior of NiTi Stents: What Do We Need?

机译:预测NiTi支架疲劳行为的计算模型:我们需要什么?

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NiTi (nickel-titanium) stents are nowadays commonly used for the percutaneous treatment of peripheral arterial disease. However, their effectiveness is still debated in the clinical field. In fact a peculiar cyclic biomechanical environment is created before and after stent implantation, with the risk of device fatigue failure. An accurate study of the device fatigue behavior is of primary importance to ensure a successful stenting procedure. Regulatory authorities recognize the possibility of performing computational analyses instead of experimental tests for the assessment of medical devices. However, confidence in numerical methods is only possible after verification and validation of the models used. For the case of NiTi stents, mechanical properties are strongly dependent on the device dimensions and the whole treatments undergone during manufacturing process. Hence, special attention should be paid to the accuracy of the description of the device geometry and the material properties implementation into the numerical code, as well as to the definition of the fatigue limit. In this paper, a path for setting up an effective numerical model for NiTi stent fatigue assessment is proposed and the results of its application in a specific case study are illustrated.
机译:如今,NiTi(镍钛合金)支架常用于经皮治疗周围动脉疾病。然而,它们的有效性在临床领域仍在争论中。实际上,在支架植入之前和之后会产生特殊的循环生物力学环境,并存在设备疲劳失效的风险。准确研究器械的疲劳行为对于确保成功进行支架置入术至关重要。监管机构认识到可以进行计算分析而不是进行实验测试来评估医疗设备。但是,只有在验证和验证所用模型之后,才能对数值方法产生信心。对于NiTi支架,机械性能在很大程度上取决于设备尺寸和制造过程中进行的整个处理过程。因此,应特别注意在数字代码中描述设备几何形状和材料特性的准确性,以及疲劳极限的定义。本文提出了建立有效的NiTi支架疲劳评估数值模型的途径,并说明了其在具体案例研究中的应用结果。

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