【24h】

Design, manufacture and in-vitro evaluation of a new microvascular anastomotic device

机译:一种新型微血管吻合装置的设计,制造和体外评估

获取原文

摘要

Introduction: Many microvascular anastomoses have been proposed for use with physical assisted methods, such as cuff, ring-pin, stapler, clip to the anastomose blood vessel. The ring-pin type anastomotic device (e.g., 3M Microvascular Anastomotic System) is the most commonly used worldwide because the anastomotic procedure can be conducted more rapidly and with fewer traumas than using sutures. However, problems including vessel leakage, ring slippage, high cost and high surgical skill demand need to be resolved. The aim of this study is to design and manufacture a new anastomotic device for microvascular anastomosis surgery and validate the device functions with in-vitro testing. Methods: The new device includes one pair of pinned rings and a set of semi-automatic flap apparatus designed and made using computer-aided design / computer-aided manufacture program. A pair of pinned rings was used to impale vessel walls and establish fluid communication with rings joined. The semi-automatic flap apparatus was used to assist the surgeon to invert the vessel walls and impale onto each ring pin, then turning the apparatus knob to bring the rings together. The device was revised until it became acceptable for clinical requires. An in-vitro test was performed using a custom-made seepage micro-fluid system to detect the leakage of the anastomotic rings. The variation between input and output flow for microvascular anastomoses was evaluated. Results: The new microvascular anastomotic device was convenient and easy to use. It requires less time than sutures to invert and impale vessel walls onto the pinned rings using the semi-automatic flap apparatus. The in-vitro test data showed that there were no tears from the joined rings seam during the procedures. Conclusions: The new anastomotic devices are effective even with some limitations still remaining. This device can be helpful to simplify the anastomosis procedure and reduce the surgery time.
机译:简介:已经提出了许多微血管吻合术,可用于物理辅助方法,例如袖带,环针,吻合器,吻合血管的夹子。环针型吻合装置(例如3M微血管吻合系统)是全世界最常用的方法,因为与使用缝合线相比,吻合手术可以更快地进行并且创伤更少。然而,需要解决包括血管渗漏,环打滑,成本高和手术技能高的问题。这项研究的目的是设计和制造一种用于微血管吻合术的新型吻合器械,并通过体外测试验证该器械的功能。方法:新设备包括一对销环和一套使用计算机辅助设计/计算机辅助制造程序设计和制造的半自动襟翼装置。一对固定环用于刺穿血管壁,并与连接的环建立流体连通。使用半自动皮瓣装置帮助外科医生翻转血管壁并穿刺到每个环销上,然后转动装置旋钮将环连接在一起。对该设备进行了修改,直到可以满足临床需求为止。使用定制的渗漏微流体系统进行了体外测试,以检测吻合环的泄漏。评估了微血管吻合术的输入和输出流量之间的变化。结果:新的微血管吻合装置方便且易于使用。使用半自动襟翼设备将缝线壁倒转和穿刺到固定环上所需的时间少于缝合线。体外测试数据显示,在手术过程中,接合环缝没有撕裂。结论:即使仍然存在一些局限性,新型吻合装置仍然有效。该设备有助于简化吻合过程并减少手术时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号