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首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Evaluation of prosthetic venous valves, fabricated by electrospinning, for percutaneous treatment of chronic venous insufficiency
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Evaluation of prosthetic venous valves, fabricated by electrospinning, for percutaneous treatment of chronic venous insufficiency

机译:评估通过静电纺丝制作的人工静脉瓣膜用于经皮治疗慢性静脉功能不全

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Chronic venous insufficiency (CVI) remains a major health problem worldwide. Direct venous valve surgical repair and venous segment transplantation are clinical options; however, they are highly invasive procedures. The objectives of this study were to fabricate prosthetic venous valves (PVVs) by electrospinning, for percutaneous treatment of CVI, and evaluate their hydrodynamic characteristics in vitro at the same locations and under the same flow conditions. The PVVs consisted of polyurethane fiber scaffolds attached to a cobalt-chromium stent. PVVs with two different valve-leaflet configurations were compared: biomimetic PVV (bPVV) and open PVV (oPVV). A balloon catheter was used to implant the devices in a poly(vinyl chloride) tube and the column outlet was set at a height of 100 cm above the test valve to simulate the elevation of the heart above a distal vein valve while standing; 50 wt% glycerin solution was used as the test fluid. The devices were evaluated for antegrade flow, effect of ankle flexion, and stagnation zones around the valve leaflets. During sudden hydrostatic backpressure, little leakage and constant peripheral pressure were observed for the devices; under forward pulsatile pressure of 0-4 mmHg, to simulate the effect of breathing, the oPVV had a higher flow rate than the bPVV. With regard to the effect of ankle flexion, the oPVV was functionless. Moreover, the stagnation zone around the oPVV valve leaflets was larger than that around the bPVV valve leaflets. These results suggest that the bPVV would be clinically suitable for percutaneous treatment of CVI.
机译:慢性静脉功能不全(CVI)仍然是世界范围内的主要健康问题。直接静脉瓣膜手术修复和静脉段移植是临床选择。但是,它们是高度侵入性的过程。这项研究的目的是通过静电纺丝制造人工静脉瓣膜(PVV),以经皮治疗CVI,并在相同位置和相同流动条件下体外评估其流体动力学特性。 PVV由附着在钴铬支架上的聚氨酯纤维支架组成。比较了具有两种不同瓣叶配置的PVV:仿生PVV(bPVV)和开放式PVV(oPVV)。使用气囊导管将装置植入聚氯乙烯管中,并将柱出口设置在测试阀上方100 cm的高度,以模拟站立时远端静脉瓣膜上方的心脏抬高。使用50重量%的甘油溶液作为测试液。对装置的顺流,踝关节屈曲和瓣膜小叶周围的停滞区进行了评估。在突然的静水背压期间,设备几乎没有泄漏和恒定的外围压力。在0-4 mmHg的正向搏动压力下,为了模拟呼吸效果,oPVV的流速要高于bPVV。关于踝关节屈曲的影响,oPVV无功能。而且,oPVV瓣膜小叶周围的停滞区大于bPVV瓣膜小叶周围的停滞区。这些结果表明,bPVV在临床上将适合经皮治疗CVI。

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