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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Fiber heart valve prosthesis: Influence of the fabric construction parameters on the valve fatigue performances
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Fiber heart valve prosthesis: Influence of the fabric construction parameters on the valve fatigue performances

机译:纤维心脏瓣膜假体:织物结构参数对瓣膜疲劳性能的影响

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Transcatheter aortic valve replacement (TAVR) has become today a largely considered alternative technique to surgical valve replacement in patients who are not operable or patients with high risk for open chest surgery. However, the biological valve tissue used in the devices implanted clinically appears to be fragile material when folded for low diameter catheter insertion purpose and released in calcified environment with irregular geometry. Textile polyester material is characterized by outstanding folding and strength properties combined with proven biocompatibility. It could thereof be considered to replace biological valve leaflets in the TAVR procedure. The textile construction parameters must however be tuned to obtain a material compatible with the valve requested durability. In that context, one issue to be addressed is the friction effect that occurs between filaments and between yams within a fabric under flexure loading. This phenomenon could be critical for the resistance of the material on the long term. The purpose of the present work is to assess the fatigue performances of textile valve prototypes made from different fabric constructions (monofila-ment, multifilament, calendered mutifilament) under accelerated cyclic loading. The goal is to identify, which construction is the best suited to long term fatigue stress. Results show that calendered multifilament and monofilament fabric constructions undergo strong ruptures already from 40 Mio cycles, while non calendered multifilament appears more durable. The rupture patterns observed point out that durability is directly related to the flexure stiffness level of the fibrous elements in the construction.
机译:经导管主动脉瓣置换术(TAVR)如今已成为无法手术的患者或开胸手术高风险患者的外科瓣膜置换术的一种广泛考虑的替代技术。然而,当折叠用于低直径导管插入目的并在具有不规则几何形状的钙化环境中释放时,临床上植入的装置中使用的生物瓣膜组织似乎是易碎的材料。纺织聚酯材料的特点是具有出色的折叠性和强度特性,并具有公认的生物相容性。可以考虑在TAVR程序中代替生物瓣膜小叶。但是,必须调整纺织品的结构参数以获得与阀门要求的耐用性兼容的材料。在这种情况下,要解决的一个问题是在挠曲载荷下在织物内的长丝之间和纱线之间产生的摩擦效应。从长远来看,这种现象对于材料的抵抗力可能至关重要。本工作的目的是评估在加速循环载荷下,由不同织物结构(单丝,复丝,压延变形)制成的纺织阀门原型的疲劳性能。目的是确定哪种结构最适合长期疲劳应力。结果表明,压延的复丝和单丝织物结构已经从40 Mio周期经历了强力断裂,而未压延的复丝显得更耐用。观察到的破裂模式指出,耐久性与结构中纤维元件的挠曲刚度水平直接相关。

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