首页> 外文期刊>Journal of endourology >Anti-Reflux Ureteral Stent with Polymeric Flap Valve Using Three-Dimensional Printing: An In Vitro Study
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Anti-Reflux Ureteral Stent with Polymeric Flap Valve Using Three-Dimensional Printing: An In Vitro Study

机译:具有三维打印的聚合物瓣阀的防回流输尿管支架的体外研究

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Purpose: This article aims to describe the design of an anti-reflux ureteral stent with a polymeric flap valve and the fabrication methods using three-dimensional (3D) printing. The stent effectively prevents backward flow with a negligible reduction in forward flow. Fabrication of miniaturized valves was easy with high precision and rapid prototyping. Materials and Methods: The proposed stent comprised a 7F Double-J (DJ) stent and a polymeric flap valve. The valve was made of Tango Plus FLX980 and was fabricated using a 3D printer. Two types of stent were prepared for in vitro tests: DJ stents with (1) an uncoated valve (UCV) stent and (2) a parylene C coated valve (PCV) stent for enhanced biocompatibility. The flow characteristics of each stent were evaluated considering flow direction, parylene coating, and stent side holes, and were compared to the intact DJ stent. Results: The forward flow rate for the distal portion of the UCV and PCV stents was 9.8mL/min and 7.8mL/min at applied pressure of 15cm H2O (normal anterograde pressure in patients with stents), respectively. Backward flow rate for the distal portion of the UCV and PCV stents was decreased by 28 times and 8 times at applied pressure of 50cm H2O (maximum bladder pressure), respectively, compared with the distal portion of the intact DJ stent. Forward flow rates of whole stents were 22.2mL/min (UCV stent) and 20.0mL/min (PCV stent) at applied pressure of 15cm H2O, and backward flow rates of whole UCV and PCV stents were decreased by 8.3 times and 4.0 times at applied pressure of 50cm H2O, respectively, compared with the intact DJ stent. Conclusions: The anti-reflux ureteral stent was successfully designed and fabricated using a 3D printer. In vitro studies showed that the stent effectively prevented backward flow while minimizing reduction in forward flow.
机译:目的:本文旨在描述具有聚合物瓣阀的抗反流输尿管支架的设计以及使用三维(3D)打印的制造方法。支架有效地防止了逆流,而正向流的减小可忽略不计。小型阀的制造很容易,具有高精度和快速的原型制作能力。材料和方法:拟议的支架包括7F Double-J(DJ)支架和聚合物瓣阀。该阀由Tango Plus FLX980制成,并使用3D打印机制造。准备了两种类型的支架用于体外测试:DJ支架具有(1)无涂层瓣膜(UCV)支架和(2)聚对二甲苯C涂层瓣膜(PCV)支架,以增强生物相容性。考虑到流向,聚对二甲苯涂层和支架侧孔,评估了每个支架的流动特性,并将其与完整的DJ支架进行了比较。结果:在施加15cm H2O的压力(支架患者的正常顺行压力)下,UCV和PCV支架远端部分的正向流速分别为9.8mL / min和7.8mL / min。与完整DJ支架的远端部分相比,在施加50cm H2O的压力(最大膀胱压力)时,UCV和PCV支架的远端部分的后向流速分别降低了28倍和8倍。在15cm H2O的施加压力下,整个支架的向前流速分别为22.2mL / min(UCV支架)和20.0mL / min(PCV支架),而UCV和PCV整个支架的反向流速分别在8.3倍和4.0倍时降低了8.3倍和4.0倍。与完整的DJ支架相比,施加的压力分别为50cm H2O。结论:使用3D打印机成功设计和制造了抗反流输尿管支架。体外研究表明,该支架可有效防止倒流,同时最大程度地减少前向流。

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