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首页> 外文期刊>Journal of endovascular therapy: an official journal of the International Society of Endovascular Specialists >In vitro evaluation of a new autologous valve-stent for deep venous incompetence.
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In vitro evaluation of a new autologous valve-stent for deep venous incompetence.

机译:对新型自体阀支架进行深静脉无能的体外评价。

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PURPOSE: To report the results of in vitro hydrostatic bench testing of a new vein-stent combination to correct deep venous incompetence. METHODS: Twelve valves were constructed from a modified Palmaz stent encased in a segment of great saphenous vein harvested from patients during routine varicose vein surgery. An in vitro flow circuit was set up to evaluate opening and closing pressures (in cm H(2)O), and the valve was subsequently subjected to repetitive cycles of increasing prograde flow and reflux pressures. Duplex scanning was used to evaluate valve closure time and detect any possible reflux. RESULTS: The valve mechanism required only 1 to 3 cm H(2)O for opening and 2 to 4 cm H(2)O for closing. Prograde flow of up to 1000 mL/min passed easily through this valve, which remained competent with reflux pressures up to 180 cm H(2)O. Mean valve closure time was 0.15+/-0.07 seconds. Unligated side branches or damage from dissection impaired the competence of 3 valves. CONCLUSION: This new vein-stent valve functions as a normal deep vein valve, requiring only minimal pressures for opening and closing. It allows high flow passage and still remains competent at high reflux pressures. This valve may provide a minimally invasive solution for the correction of deep venous incompetence using autologous material. Further in vivo evaluation will be mandatory.
机译:目的:报告新的静脉支架组合的体外静液压台面试验结果,以纠正深静脉的无能。方法:在常规静脉曲张手术期间从患者收获的巨大隐静脉内部包裹的修饰棕榈地支架构建了12个瓣膜。建立体外流动回路以评估开口和关闭压力(以cm H(2))),随后对瓣膜流动和回流压力的重复循环进行重复循环。双工扫描用于评估阀门闭合时间并检测任何可能的回流。结果:阀门机构仅需1至3cm H(2)o,用于开口,2至4cm H(2)O用于关闭。通过该阀门可容易地通过1000ml / min的促进流动,该阀门仍然具有高达180cm H(2)O的回流压力。平均阀门闭合时间为0.15 +/- 0.07秒。解剖侧分支或解剖损坏损害了3个阀门的竞争力。结论:这种新的静脉支架阀用作正常的深静脉阀,仅需要最小的压力来打开和关闭。它允许高流动通道,并且仍然在高回流压力下仍然胜任。该阀可以提供使用自体材料校正深静脉的无能的微创解决方案。进一步在体内评估将是强制性的。

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