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Nitinol Stents in the Femoropopliteal Artery: A Mechanical Perspective on Material Design and Performance

机译:股pop动脉中的镍钛诺支架:对材料设计和性能的机械观察

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摘要

Endovascular stenting has matured into a commonly used treatment for peripheral arterial disease (PAD) due to its minimally invasive nature and associated reductions in short-termmorbidity and mortality. The mechanical properties of the superelastic Nitinol alloy have played a major role in the explosion of peripheral artery stenting, with modern stents demonstrating reasonable resilience and durability. Yet in the superficial femoral and popliteal arteries, even the newest generation Nitinol stents continue to demonstrate clinical outcomes that leave significant room for improvement. Restenosis and progression of native arterial disease often lead to recurrence of symptoms and reinterventions that increase morbidity and health care expenditures. One of the main factors thought to be associated with stent failure in the femoropopliteal artery (FPA) is the unique and highly dynamic mechanical environment of the lower limb. Clinical and experimental data demonstrate that the FPA undergoes significant deformations with limb flexion. It is hypothesized that the inability of many existing stent designs to conform to these deformations likely plays a role in reconstruction failure, as repetitive movements of the leg and thigh combine with mechanical mismatch between the artery and the stent and result in mechanical damage to both the artery and the stent. In this review we will identify challenges and provide a mechanical perspective of FPA stenting, and then discuss current research directions with promise to provide a better understanding of Nitinol, specific features of stent design, and improved characterization of the biomechanical environment of the FPA to facilitate development of better stents for patients with PAD.
机译:血管内支架置入术由于其微创的性质以及相关的短期发病率和死亡率的降低,已经成熟成为外周动脉疾病(PAD)的常用治疗方法。超弹性镍钛诺合金的机械性能在外周动脉支架的爆炸中起了主要作用,现代支架显示出合理的弹性和耐用性。然而,在股浅动脉和lite动脉中,即使是最新一代的镍钛诺支架,也继续显示出临床结果,仍有很大的改善空间。再狭窄和天然动脉疾病的发展通常会导致症状复发和再干预,从而增加发病率和医疗保健支出。被认为与股pop动脉(FPA)支架衰竭相关的主要因素之一是下肢独特且高度动态的机械环境。临床和实验数据表明,FPA会随着肢体屈曲而发生明显变形。假设许多现有的支架设计无法适应这些变形可能是重建失败的原因,因为腿和大腿的重复运动与动脉和支架之间的机械失配相结合并导致对支架和支架的机械损伤。动脉和支架。在这篇综述中,我们将确定挑战并提供FPA支架的机械观点,然后讨论当前的研究方向,以期更好地了解镍钛诺,支架设计的特定功能以及改善FPA的生物力学环境特征,以促进为PAD患者开发更好的支架。

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