首页> 外文会议>Medical laser applications and laser-tissue interactions V >In vivo laser assisted end-to-end anastomosis with ICG-infused chitosan patches
【24h】

In vivo laser assisted end-to-end anastomosis with ICG-infused chitosan patches

机译:体内激光辅助ICG注入的壳聚糖贴剂进行端到端吻合

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Laser assisted vascular repair is a new optimized technique based on the use of ICG-infused chitosan patch to close a vessel wound, with or even without few supporting single stitches. We present an in vivo experimental study on an innovative end-to-end laser assisted vascular anastomotic (LAVA) technique, performed with the application of ICGinfused chitosan patches. The photostability and the mechanical properties of ICG-infused chitosan films were preliminary measured. The in vivo study was performed in 10 New Zealand rabbits. After anesthesia, a 3-cm segment of the right common carotid artery was exposed, thus clamped proximally and distally. The artery was then interrupted by means of a full thickness cut. Three single microsutures were used to approximate the two vessel edges. The ICG-infused chitosan patch was rolled all over the anastomotic site and welded by the use of a diode laser emitting at 810 nm and equipped with a 300 μm diameter optical fiber. Welding was obtained by delivering single laser spots to induce local patch/tissue adhesion. The result was an immediate closure of the anastomosis, with no bleeding at clamps release. Thus animals underwent different follow-up periods, in order to evaluate the welded vessels over time. At follow-up examinations, all the anastomoses were patent and no bleeding signs were documented. Samples of welded vessels underwent histological examinations. Results showed that this technique offer several advantages over conventional suturing methods: simplification of the surgical procedure, shortening of the operative time, better re-endothelization and optimal vascular healing process.
机译:激光辅助血管修复是一项新的优化技术,其基础是使用注入ICG的壳聚糖贴剂来闭合血管伤口,甚至很少支撑单个针脚。我们提出了一种具有创新性的端到端激光辅助血管吻合术(LAVA)技术的体内实验研究,该实验是通过应用ICGinfused壳聚糖贴剂进行的。初步测量了注入ICG的壳聚糖膜的光稳定性和机械性能。在10只新西兰兔中进行了体内研究。麻醉后,右颈总动脉的3厘米部分暴露在外,从而在近端和远端进行夹紧。然后通过全厚度切割来中断动脉。使用三个单缝线来近似两个血管边缘。将注入ICG的壳聚糖贴剂在整个吻合部位滚动,并通过使用发射波长为810 nm且配备了300μm直径光纤的二极管激光器进行焊接。通过传递单个激光点以诱导局部斑块/组织粘附来获得焊接。结果是吻合口立即闭合,钳夹释放时无出血。因此,动物要经历不同的随访期,以便随时间评估焊接血管。在随访检查中,所有的吻合口均已获得专利,没有出血迹象。焊接容器的样本接受了组织学检查。结果表明,与传统的缝合方法相比,该技术具有多个优点:简化了手术过程,缩短了手术时间,更好的重新内皮化和最佳的血管愈合过程。

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