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An intriguing design concept to enhance the pulsatile fatigue life of self-expanding stents

机译:一种引人入胜的设计概念,可延长自扩张式支架的脉动疲劳寿命

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Intravascular stenting has emerged as the primary treatment for vascular diseases and has received great attention from the medical community since its introduction two decades ago. The endovascular self-expanding stent is used to treat peripheral artery diseases; however, once implanted, these stents suffer from various cyclic motions caused by pulsatile blood pressure and daily activities. Due to this challenging environment, fatigue performance has become a critical issue for stent design. In this paper, a simple yet intriguing concept of stent design aimed at enhancing pulsatile fatigue life is investigated. The concept of this design is to shift the highly concentrated stresses/strains away from the crown and re-distribute them along the stress-free bar arm by tapering its strut width. Finite element models were developed to evaluate the mechanical integrity and pulsatile fatigue resistance of the stent to various loading conditions. Results show that the fatigue safety factor jumped to 2.5-3.0 times that of the standard stent with constant strut width. This is astonishing considering that the stent profile and scaffolding were not compromised. The findings of this paper provide an excellent approach to the optimization of future stent design to greatly improve stent fatigue performance.
机译:自二十多年前问世以来,血管内支架已经成为治疗血管疾病的主要方法,并引起了医学界的极大关注。血管内自扩张支架用于治疗周围动脉疾病。然而,一旦植入,这些支架会遭受由脉动血压和日常活动引起的各种循环运动的影响。由于这种具有挑战性的环境,疲劳性能已成为支架设计的关键问题。在本文中,研究了一种旨在延长搏动性疲劳寿命的简单而有趣的支架设计概念。这种设计的概念是将高度集中的应力/应变从胎冠上移开,并通过逐渐减小其撑杆宽度使它们沿着无应力的杆臂重新分布。开发了有限元模型来评估支架在各种载荷条件下的机械完整性和抗脉动疲劳性。结果表明,在具有恒定支柱宽度的情况下,疲劳安全系数跃升至标准支架的2.5-3.0倍。考虑到支架轮廓和脚手架没有受到影响,这真是令人惊讶。本文的发现为优化将来的支架设计提供了一种极好的方法,可以极大地改善支架的疲劳性能。

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