Esposito G, Rossi F, Puca A, Albanese A, Sabatino G, Matteini P, Lofrese G, Maira G, Pini R
Institute of Neurosurgery, Catholic University, Rome, Italy.
J Biol Regul Homeost Agents. 2010 Jul-Sep;24(3):307-15.
Laser welding has been proposed as an alternative technique to conventional stitching in microvascular anastomosis, with the advantages of improving the vascular healing process and reducing the risk of malfunction of a bypass. Our group recently proposed a laser-assisted end-to-side anastomotic technique, providing the advantages of laser welding and reducing the occlusion time of the recipient vessel, that is important in neurosurgical bypass procedures, in order to reduce the risk of cerebral ischemia. This in vivo study focuses on the control of the temperature dynamics developing in the welded tissue. A jugular vein graft was harvested and implanted on the rabbit carotid artery by means of two end-to-side anastomosis. Laser welding procedure was then carried out to implant the bypass. A real-time monitoring of the temperature during welding was performed with an infrared thermocamera, in order to control the laser-induced heating effect on the external surface of the vessel walls. The temperature analysis highlighted the dynamic of the heating effect in space and time and enabled us to define an optimal temperature range in operative conditions. The temperature control provided safe tissue heating confined within the directly irradiated area, with negligible damage to surrounding tissues, as well as effective sealing and welding of the vessel edges at the anastomotic sites. The average occlusion time of the carotid artery was about 11 minutes. After a follow-up of 30 days, all the bypasses were patent and no signs of thrombosis or leak point pressure were present, thus confirming the safety of this laser-assisted anastomotic procedure.
激光焊接已被提议作为微血管吻合术中传统缝合的替代技术,具有改善血管愈合过程和降低旁路功能故障风险的优点。我们小组最近提出了一种激光辅助端侧吻合技术,该技术兼具激光焊接的优点,并减少了受体血管的闭塞时间,这在神经外科旁路手术中很重要,目的是降低脑缺血风险。这项体内研究聚焦于对焊接组织中温度动态变化的控制。采集颈静脉移植物,并通过两次端侧吻合将其植入兔颈动脉。然后进行激光焊接程序以植入旁路。使用红外热像仪对焊接过程中的温度进行实时监测,以控制激光对血管壁外表面的加热效果。温度分析突出了加热效果在空间和时间上的动态变化,并使我们能够确定手术条件下的最佳温度范围。温度控制使得组织加热安全地局限在直接照射区域内,对周围组织的损伤可忽略不计,同时在吻合部位实现了血管边缘的有效密封和焊接。颈动脉的平均闭塞时间约为11分钟。经过30天的随访,所有旁路均通畅,未出现血栓形成或漏点压力的迹象,从而证实了这种激光辅助吻合手术的安全性。