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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The Development of an In Vitro Test Method for Predicting the Abrasion Resistance of Textile and Metal Components of Endovascular Stent Grafts
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The Development of an In Vitro Test Method for Predicting the Abrasion Resistance of Textile and Metal Components of Endovascular Stent Grafts

机译:预测腹血管支架移植物纺织纺织磨损性的体外试验方法的发展

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Implantable endovascular stent grafts have become a frequent option for the treatment of abdominal and thoracic aneurysms. Given that such devices are permanent implants, the question of long-term biostability needs to be addressed. This article describes the development of an in vitro stent graft abrasion test method between the graft fabric and metal stent of an endovascular device. Three endpoints were established to determine the abrasion resistance between the fabric and stent surfaces after a predetermined number of abrasion cycles. During initial testing, two types of graft fabric materials, multifilament woven polyester fabric and monofilament woven polyester fabric, and two types of stent materials, laser cut nitinol stents and regular nitinol stent wire, were evaluated under dry and wet conditions. The results have shown that this test method is viable for testing the relative abrasion resistance of the components of endovascular stent grafts. The abrasion resistance of both fabrics was lower in a wet environment compared to being tested dry. Additionally, the multifilament polyester fabric had better abrasion resistance than the monofilament polyester fabric. The laser cut nitinol stent was more aggressive in creating holes and breaking yarns, while the regular nitinol stent wire caused a greater loss in fabric Strength.
机译:可植入的血管内支架移植物已成为治疗腹部和胸腔动脉瘤的频繁选择。鉴于此类设备是永久性植入物,需要解决长期生物稳定性的问题。本文介绍了血管内装置的接枝织物和金属支架之间的体外支架移植磨损试验方法的发展。建立三个端点以确定预定数量的磨损循环后织物和支架表面之间的耐磨性。在初始测试期间,在干燥和潮湿的条件下评估两种类型的接枝织物材料,多丝编织聚酯织物和单丝编织聚酯织物,以及两种类型的支架材料,激光切割Nitinol支架和常规镍钛矿线。结果表明,该测试方法可行,用于测试血管内支架移植物的组分的相对耐磨性。与测试干燥相比,湿环境中,两种织物的耐磨性较低。另外,多丝聚酯织物具有比单丝聚酯织物更好的耐磨性。激光切割镍钛烯醇支架在产生孔和破碎纱线时更具侵蚀性,而常规的镍钛烯醇支架线导致织物强度的损失更大。

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