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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Finite element analysis and animal test verification of nitinol alloy iliac vein stent performance
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Finite element analysis and animal test verification of nitinol alloy iliac vein stent performance

机译:镍钛合金ILIAC静脉支架性能的有限元分析与动物试验验证

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The design and fatigue strength of a nitinol iliac vein stent (NIVS) proposed in this study are assessed using the finite element analysis method. The influence of stent diameter and different release scales on its strength, lifespan and biomechanical properties of the vein wall is analyzed for self-developed NIVS of three different diameters (12, 14 and 16mm) and length of 26mm, which were implanted into the corresponding iliac vein with different release scales (80% and 90%). The results obtained strongly indicate that with an increase in the release scale, the equivalent elastic strain, safety factors of fatigue strength, and equivalent stress of the vessel wall exhibit a downward trend, while the most stressed cross-section coincides with the arc of stent-connecting rods. The efficiency and safety of the above stents were verified by in vivo tests (with observation periods of 30, 90 and 180 days after operation) on ten lab pigs, which underwent NIVS implantation into the iliac veins, with observation of hemodynamics, stent deployment, presence/absence of thrombosis, and monitoring of stent lumen loss and its rate. During the animal test verification, the stent release was satisfactory, while the radiography revealed no obvious stent displacement at different time points. In addition, the patency rate of the stent was 100%. Except for the control group, where a small amount of old thrombus was found, other stents exhibited no thrombus; at the same time, there was no significant difference in the lumen loss rate of the stent at each time point. Therefore, the proposed nitinol NIVS samples demonstrated a good performance, accurate positioning, and release, in addition to the reduced risk of lateral iliac vein thrombosis.
机译:使用有限元分析方法评估本研究中提出的Nitinol髂静脉支架(NIV)的设计和疲劳强度。分析了支架直径和不同释放尺度对其强度,寿命和生物力学性能的影响,静脉壁的自我开发NIV,三种不同直径(12,14和16mm)和长度为26mm,其植入相应的髂静脉不同的释放鳞片(80%和90%)。得到的结果强烈表明,随着释放量表的增加,疲劳强度的等效弹性应变,安全性因素,以及血管壁的等效应力表现出下降趋势,而最应力的横截面与支架的弧形相一致-连接杆。通过体内试验(在术后30,90和180天的观察期)验证上述支架的效率和安全性,该猪在植入NIVs植入髂静脉中,观察血液动力学,支架部署,存在/不存在血栓形成,监测支架腔损失及其率。在动物试验验证过程中,支架释放令人满意,而射线照相显示在不同时间点没有明显的支架位移。此外,支架的通畅率为100%。除了对照组外,在发现少量旧血栓之外,其他支架没有表现出血栓;同时,每个时间点的支架的内腔损耗率没有显着差异。因此,除了减少髂静脉血栓形成的风险降低之外,提出的尼替诺烯醇样品还表明了良好的性能,准确定位和释放。

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