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首页> 外文期刊>Biomedizinische Technik >Hybrid textile heart valve prosthesis: preliminary in vitro evaluation
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Hybrid textile heart valve prosthesis: preliminary in vitro evaluation

机译:混合纺织心脏瓣膜假体:初步体外评估

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摘要

Transcatheter aortic valve implantation (TAVI) is nowadays a popular alternative technique to surgical valve replacement for critical patients. Biological valve tissue has been used in these devices for over a decade now with over 100,000 implantations. However, material degradations due to crimping for catheter insertion purpose have been reported, and with only 6-year follow-up, no information is available about the long-term durability of biological tissue. Moreover, expensive biological tissue harvesting and chemical treatment procedures tend to promote the development of synthetic valve leaflet materials. Textile polyester (PET) material is characterized by outstanding folding and strength properties combined with proven biocompatibility and could therefore be considered as a candidate to replace biological valve leaflets in TAVI devices. Nevertheless, the material should be preferentially partly elastic in order to limit water hammer effects at valve closing time and prevent exaggerated stress from occurring into the stent and the valve. The purpose of the present work is to study in vitro the mechanical as well as the hydrodynamic behavior of a hybrid elastic textile valve device combining non-deformable PET yam and elastic polyurethane (PU) yarn. The hybrid valve properties are compared with those of a non-elastic textile valve. Testing results show improved hydrodynamic properties with the elastic construction. However, under fatigue conditions, the interaction between PU and PET yarns tends to limit the valve durability.
机译:如今,经导管主动脉瓣植入术(TAVI)已成为危重患者外科瓣膜置换术的一种流行替代技术。生物瓣膜组织已经在这些设备中使用了十多年,现在植入了超过100,000次。然而,已经报道了由于用于导管插入的压接而导致的材料降解,并且仅进行了6年的随访,尚无关于生物组织的长期耐久性的信息。而且,昂贵的生物组织收集和化学处理程序倾向于促进合成瓣膜小叶材料的发展。纺织聚酯(PET)材料的特点是具有出色的折叠性和强度特性,并具有经过验证的生物相容性,因此可以考虑替代TAVI设备中的生物瓣膜小叶。然而,该材料应当优选地是部分弹性的,以限制在瓣膜关闭时的水锤效应,并防止在支架和瓣膜中出现过大的应力。本工作的目的是在体外研究结合了不可变形PET纱线和弹性聚氨酯(PU)纱线的混合弹性纺织阀门装置的机械性能和流体力学性能。将混合阀的性能与非弹性纺织阀的性能进行了比较。测试结果表明,弹性结构改善了流体力学性能。但是,在疲劳条件下,PU和PET纱线之间的相互作用往往会限制阀门的耐用性。

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