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Development and Physical Characteristics of Novel Zero-Porosity Vascular Graft Triplex®

机译:新型零孔隙率血管移植物Triplex®的开发和物理特性

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摘要

>We developed a novel large-diameter graft “Triplex®” that uses a non-biodegradable material as a coating material. This time, in order to demonstrate the physical properties of Triplex® grafts, we conducted physical tests in accordance with the international guidelines, using the collagen coated vascular grafts (Hemashield, Boston Scientific, Natick, Massachusetts, USA) as the controls. The grafts were tested with regard to strength (burst strength, circumferential tensile strength, longitudinal tensile strength), suture retention strength, integral water permeability, water leakage (needle puncture, after using clamp), and change in luminal diameter following pacing stress according to ISO7198 and FDA guidance. As indicated by the results, we experimentally demonstrated that uniquely designed vascular graft Triplex® led to less blood leakage from the vascular graft and less leakage from the needle puncture, although it has fundamental physical properties comparable to those of the vascular grafts using biodegradable material that has been utilized conventionally in clinical settings. Triplex ®is expected to play its role as a clinically beneficial next-generation vascular graft.
机译:>我们开发了一种新颖的大直径移植物“ Triplex ®”,该移植物使用了不可生物降解的材料作为涂层材料。这次,为了证明Triplex ®移植物的物理特性,我们根据国际准则使用胶原蛋白涂层的血管移植物进行了物理测试(Hemashield,Boston Scientific,Natick,马萨诸塞州,美国)作为控件。根据强度(爆裂强度,周向拉伸强度,纵向拉伸强度),缝合线保持强度,整体透水性,漏水率(针头穿刺后,使用钳子)以及起搏应力后的管腔直径变化,对移植物进行了测试ISO7198和FDA指南。结果表明,我们通过实验证明,设计独特的血管移植物Triplex ®可使血管移植物的血液渗漏减少,而针刺的渗漏也较少,尽管它的基本物理性能可与使用在临床环境中常规使用的可生物降解材料制成的血管移植物。有望将Triplex ®用作临床上有益的下一代血管移植物

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