首页> 外文会议>Photonic Therapeutics and Diagnostics II; Progress in Biomedical Optics and Imaging; vol.7, no.1 >Laser Welding of Urinary Tissues, Ex Vivo, Using a Tunable Thulium Fiber Laser
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Laser Welding of Urinary Tissues, Ex Vivo, Using a Tunable Thulium Fiber Laser

机译:使用可调ul光纤激光器进行离体尿组织的激光焊接

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Recent advances in Thulium fiber laser technology have resulted in the availability of a compact, inexpensive, tunable, mid-infrared laser for potential use in laser surgery. The objective of this study was to tune the Thulium fiber laser wavelength and corresponding optical penetration depth to match the tissue thickness, and thus produce full-thickness, watertight tissue closure during microsurgical laser welding of urinary tissues. 1-cm-length incisions were made, ex vivo, in porcine ureters. Thulium fiber laser radiation with a wavelength of 1873 nm, power of 550-650 mW, and 750-μm-diameter spot was delivered to the tissue in continuous-wave mode through a 600-μm silica optical fiber. The fiber was scanned over the weld site once at a rate of 0.1 mm/s using a motion controller and linear stage controlled by a PC. Optical coherence tomography, histology, flow rates, and temperature measurements were used to optimize and evaluate laser welding success. Histologic analysis demonstrated full-thickness welding of the ureteral wall. Weld success rates ranged from 67% (8/12) at an incident laser power of 550 mW to 91% (10/11) at 650 mW. Peak flow rates greater than 200 ml/min were measured, however, mean flow rates were only about 50 ml/min. Average tissue temperatures increased with incident laser power from 59-89℃. The tunable Thulium fiber laser may be useful for surgical applications requiring variable control of thermal coagulation depth, such as microsurgical laser tissue welding.
机译:fiber光纤激光技术的最新进展已导致可获得紧凑,便宜,可调谐的中红外激光,可用于激光手术。这项研究的目的是调整Th纤维激光的波长和相应的光穿透深度,以匹配组织的厚度,从而在泌尿组织的显微外科手术激光焊接过程中产生全厚度,水密性的组织闭合。在猪输尿管上离体切出1厘米长的切口。波长为1873 nm,功率为550-650 mW,直径为750μm的ul光纤激光辐射以连续波模式通过600μm的石英光纤传输到组织。使用运动控制器和由PC控制的线性平台,以0.1 mm / s的速度在焊接部位对纤维进行一次扫描。光学相干断层扫描,组织学,流速和温度测量被用于优化和评估激光焊接成功率。组织学分析表明输尿管壁全厚度焊接。焊接成功率范围从550 mW的入射激光功率的67%(8/12)到650 mW的91%(10/11)。测量的峰值流速大于200 ml / min,但是平均流速仅为约50 ml / min。平均组织温度随入射激光功率从59-89℃升高。可调Th光纤激光器可用于需要可变控制热凝深度的外科应用,例如显微外科激光组织焊接。

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