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Ni-Ti Self-Expanding Vascular Stent Configuration and Biomedical Interaction with Artery: Finite Element Analysis

机译:Ni-Ti自扩张血管支架配置和动脉的生物医学相互作用:有限元分析

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In spite of the fact that the US Food and Drug Administration (FDA) has approved Intracoil and s.m.a.r.t Nitinol stents for superficial femoral artery (SFA), some alternative designs of Nitinol stents are being implanted today, representing the off-label use of the devices. Among the currently stents used for the SFA, s.m.a.r.t and Intracoil stents show the most desirable long-term results but it is not understood why. In the present work, delivery of the s.m.a.r.t and Intracoil Nitinol stents and their release inside a stenotic point of the artery was simulated by FE implemented SMA model using a creative manual controlled method. The influence of the stent design on the stent-vessel interactions and stress state within the stent material after completion of the deployment was revealed. It was found that the Intracoil stent shall be more successful in eliminating the stenosis and less prone to fatigue failure, even though it had less thickness and less mean coil diameter.
机译:尽管美国食品和药物管理局(FDA)已经批准了浅表股骨动动脉(SFA)的内胞瘤和智能镍钛烯醇支架,但今天正在植入镍钛诺支架的一些替代设计,代表了设备的偏离标签使用。目前用于SFA,S.M.A.R.T和Intracoil支架的长期展示了最理想的长期结果,但不理解为什么。在目前的工作中,通过FE实现SMA模型使用创意手动控制方法模拟动脉狭窄点的递送,递送S.M.A.R.T和Interacoil Nitinol支架及其在动脉的狭窄点内。揭示了在展开完成后支架材料在支架材料中的支架相互作用和应力状态的影响。结果发现,即使它具有较少的厚度和更少的平均线圈直径,腔内支架在消除狭窄和易疲劳失效方面也会更成功。

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