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[不同变形模式下下肢动脉支架力学性能的对比研究]

[Comparative study on the mechanical properties of lower limb arterial stents under various deformation modes].

作者信息

Wang Tianqi, Feng Haiquan, Wang Kun

机构信息

College of Mechanical Engineering, Inner Mongolia University of Technology, Hohhot 010051, P.R.China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2021 Apr 25;38(2):303-309. doi: 10.7507/1001-5515.202006028.

Abstract

Lower extremity movement is a complex and large range of limb movement. Arterial stents implanted in lower extremity are prone to complex mechanical deformation, so the stent is required to have high comprehensive mechanical properties. In order to evaluate the mechanical property of different stents, in this paper, finite element method was used to simulate and compare the mechanical properties of six nitinol stents (Absolute Pro, Complete SE, Lifestent, Protégé EverFlex, Pulsar-35 and New) under different deformation modes, such as radial compression, axial compression/tension, bending and torsion, and the radial support performance of the stents was verified by experiments. The results showed that the comprehensive performance of New stent was better than other stents. Among which the radial support performance was higher than Absolute Pro and Pulsar-35 stent, the axial support performance was better than Complete SE, Lifestent and Protégé EverFlex stent, the flexibility was superior to Protégé Everflex stent, and the torsion performance was better than Complete SE, Lifestent and Protégé Everflex stent. The TTR2 type radial support force tester was used to test the radial support performance of 6 types, and the finite element analysis results were verified. The mechanical properties of the stent are closely related to the structural size. The result provides a reference for choosing a suitable stent according to the needs of the diseased location in clinical applications.

摘要

下肢运动是一种复杂且幅度较大的肢体运动。植入下肢的动脉支架容易发生复杂的机械变形,因此要求支架具有较高的综合力学性能。为了评估不同支架的力学性能,本文采用有限元方法模拟并比较了六种镍钛诺支架(Absolute Pro、Complete SE、Lifestent、Protégé EverFlex、Pulsar - 35和New)在不同变形模式下的力学性能,如径向压缩、轴向压缩/拉伸、弯曲和扭转,并通过实验验证了支架的径向支撑性能。结果表明,New支架的综合性能优于其他支架。其中,其径向支撑性能高于Absolute Pro和Pulsar - 35支架,轴向支撑性能优于Complete SE、Lifestent和Protégé EverFlex支架,柔韧性优于Protégé Everflex支架,扭转性能优于Complete SE、Lifestent和Protégé Everflex支架。使用TTR2型径向支撑力测试仪对6种型号的径向支撑性能进行测试,验证了有限元分析结果。支架的力学性能与结构尺寸密切相关。该结果为临床应用中根据病变部位需求选择合适的支架提供了参考。

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In situ longitudinal pre-stretch in the human femoropopliteal artery.人股腘动脉的原位纵向预拉伸
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