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Study of Novel Textile Conduits for Stent-Grafts: Approaches to Improve Their Water Permeability

机译:用于支架移植的新型纺织管道:改善水渗透性的方法

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摘要

Textile vascular grafts, normally with large space cavity between yarns or filaments. might fail because of the leakage of blood after they are implanted into human's body. Consequently, patients' lives are threatened. How to control textile structures to make them more compact is a problem that needs to be solved. The woven constructions of commercial products mainly contain 4/4 twill weave and 1/1 plain weave. In this study, novel tubular and seamless prototype vascular grafts with different yarn size, yam type and weaves were successfully manufactured through relative easier weaving process. Physical characteristics of the prototype samples were measured and compared with two commercial products, Cook/Bolton and Talent/Medtronic. Factors to influence the physical characteristics that are important for commercial application, as water permeability, thickness, and porosity of the prototype samples were also analyzed. It was found that yarn type and weaves had major influence on water permeability. Yarn size had major influence on thickness.
机译:纺织血管移植物,通常在纱线或长丝之间具有大空腔。由于血液植入到人体后,可能会失败。因此,患者的生命受到威胁。如何控制纺织结构,使其更紧凑是需要解决的问题。商业产品的编织结构主要含有4/4斜纹织物和1/1平原编织。在本研究中,通过相对更容易的编织过程成功地制造了具有不同纱线尺寸,山药类型和编织的新型管状和无缝原型血管移植物。测量了原型样品的物理特性,并与两种商业产品,库克/博尔顿和天赋/塞进进行了比较。还分析了影响对商业应用重要的物理特性的因素,作为原型样品的水渗透性,厚度和孔隙率。发现纱线类型和编织物对水渗透有重大影响。纱线大小对厚度有重大影响。

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