首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Comparison of femoropopliteal artery stents under axial and radial compression, axial tension, bending, and torsion deformations
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Comparison of femoropopliteal artery stents under axial and radial compression, axial tension, bending, and torsion deformations

机译:轴向和径向压缩下股骨质动脉支架的比较,轴向张力,弯曲和扭转变形

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High failure rates of Peripheral Arterial Disease (PAD) stenting appear to be associated with the inability of certain stent designs to accommodate severe biomechanical environment of the femoropopliteal artery (FPA) that bends, twists, and axially compresses during limb flexion. Twelve Nitinol stents (Absolute Pro, Supera, Lifestent, Innova, Zilver, Smart Control, Smart Flex, EverFlex, Viabahn, Tigris, Misago, and Complete SE) were quasi-statically tested under bench-top axial and radial compression, axial tension, bending, and torsional deformations. Stents were compared in terms of force-strain behavior, stiffness, and geometrical shape under each deformation mode. Tigris was the least stiff stent under axial compression (6.6 N/m axial stiffness) and bending (0.1 N/m) deformations, while Smart Control was the stiffest (575.3 N/m and 105.4 N/m, respectively). Under radial compression Complete SE was the stiffest (892.8 N/m), while Smart Control had the lowest radial stiffness (211.0 N/m). Viabahn and Supera had the lowest and highest torsional stiffness (2.2 mu N m/degrees and 959.2 mu N m/degrees), respectively. None of the 12 PAD stents demonstrated superior characteristics under all deformation modes and many experienced global buckling and diameter pinching. Though it is yet to be determined which of these deformation modes might have greater clinical impact, results of the current analysis may help guide development of new stents with improved mechanical characteristics.
机译:外周动脉疾病(垫)支架的高失效率似乎与某些支架设计的无法能够适应股骨头动脉(FPA)的严重生物力学环境,其在弯曲,曲线弯曲期间弯曲和轴向压缩。十二个硝基诺支架(Absolute Pro,Supera,Lefectent,Innova,Zilver,Smart Control,Smart Flex,Everflex,ViaBahn,Tigris,Misago和完整SE)在台式轴向和径向压缩,轴向张力下进行准静态测试,弯曲和扭转变形。在每个变形模式下,在力应变行为,刚度和几何形状方面进行比较支架。底格菇是轴向压缩(6.6 n / m轴刚度)和弯曲(0.1n / m)变形的最小支架,而智能控制是最硬的(分别为575.3n / m和105.4 n / m)。在径向压缩下,完成SE是最硬(892.8n / m),智能控制具有最低的径向刚度(211.0n / m)。 Viabahn和Supera分别具有最低,最高的扭转刚度(2.2 mu n / decles,959.2 mu / decles)。 12个垫支架中没有一个在所有变形模式下表现出优异的特性,并且许多经历了许多经历了全球屈曲和直径夹紧。虽然尚未确定这些变形模式中的哪一种可能具有更大的临床影响,但目前分析的结果可能有助于引导具有改进的机械特性的新支架。

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