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In situ cooling with ice water for the easier removal of self-expanding nitinol stents

机译:用冰水进行原位冷却,以更轻松地卸下自膨胀镍钛合金支架

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Background: It is yet to be determined what effects temperature has on the properties of nitinol in order to simplify the process of removing nitinol self-expanding metal stents (SEMS). Materials and methods: We describe the procedure for removal of SEMS in a total of 11 cases with 9 patients. A study involving cooling of nitinol stents in situ with ice water just before their removal was attempted. Results: All stents were removed successfully. In partially covered and in fully covered stents, the stent rigidity was noticeably reduced following cooling. Stent removal was performed by inversion, which was achieved by pulling on the stent from its distal end. No adverse events were observed during this trial. Conclusion: The higher pliability of the stents after ice-water cooling facilitates stent removal. With this method, a mobilization of all stents by the invagination technique was achieved. The separation of the uncoated stent ends from the intestinal wall by the invagination technique, as well as the mucosal vasoconstriction resulting from the cooling, lead to an easier SEMS removal and may serve to prevent severe bleeding of the mucosal wall during this process.
机译:背景:尚未确定温度对镍钛合金性能的影响,以简化去除镍钛合金自膨胀金属支架(SEMS)的过程。材料和方法:我们描述了总共11例9例患者的SEMS去除程序。一项涉及尝试在将镍钛合金支架取出前就地用冰水冷却的研究。结果:所有支架均成功拆除。在部分覆盖的和完全覆盖的支架中,冷却后支架的刚度明显降低。通过倒置术去除支架,这是通过从远端拉动支架来实现的。在该试验中未观察到不良事件。结论:冰水冷却后,较高的支架柔韧性促进了支架的拆除。通过这种方法,通过内陷技术实现了所有支架的动员。通过内陷技术将未涂覆的支架末端从肠壁上分离,以及由于冷却而导致的粘膜血管收缩,导致更易于去除SEMS,并可在此过程中防止粘膜壁严重出血。

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