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光纤操纵应用钬:YAG 和掺铥光纤激光处理尿路结石模型。

Fiber-optic manipulation of urinary stone phantoms using holmium:YAG and thulium fiber lasers.

机构信息

University of North Carolina at Charlotte, Department of Physics and Optical Science, 9201 University City Avenue, Charlotte, NC 28223-0001, USA.

出版信息

J Biomed Opt. 2013 Feb;18(2):28001. doi: 10.1117/1.JBO.18.2.028001.

Abstract

Fiber-optic attraction of urinary stones during laser lithotripsy may be exploited to manipulate stone fragments inside the urinary tract without mechanical grasping tools, saving the urologist time and space in the ureteroscope working channel. We compare thulium fiber laser (TFL) high pulse rate/low pulse energy operation to conventional holmium:YAG low pulse rate/high pulse energy operation for fiber-optic suctioning of plaster-of-paris (PoP) stone phantoms. A TFL (wavelength of 1908 nm, pulse energy of 35 mJ, pulse duration of 500 μs, and pulse rate of 10 to 350 Hz) and a holmium laser (wavelength of 2120 nm, pulse energy of 35 to 360 mJ, pulse duration of 300 μs, and pulse rate of 20 Hz) were tested using 270-μm-core optical fibers. A peak drag speed of ~2.5 mm/s was measured for both TFL (35 mJ and 150 to 250 Hz) and holmium laser (210 mJ and 20 Hz). Particle image velocimetry and thermal imaging were used to track water flow for all parameters. Fiber-optic suctioning of urinary stone phantoms is feasible. TFL operation at high pulse rates/low pulse energies is preferable to holmium operation at low pulse rates/high pulse energies for rapid and smooth stone pulling. With further development, this novel technique may be useful for manipulating stone fragments in the urinary tract.

摘要

在激光碎石术中,光纤对尿结石的吸引力可以被利用来操纵泌尿道内的结石碎片,而无需使用机械抓取工具,从而为泌尿科医生节省输尿管镜工作通道中的时间和空间。我们比较了钬光纤激光(TFL)高脉冲率/低脉冲能量操作与传统的钬:YAG 低脉冲率/高脉冲能量操作,以用于对石膏结石模型进行光纤抽吸。使用 270-μm 芯光纤对 TFL(波长 1908nm,脉冲能量 35mJ,脉冲持续时间 500μs,脉冲率 10 至 350Hz)和钬激光(波长 2120nm,脉冲能量 35 至 360mJ,脉冲持续时间 300μs,脉冲率 20Hz)进行了测试。对于 TFL(35mJ 和 150 至 250Hz)和钬激光(210mJ 和 20Hz),都测量到了约 2.5mm/s 的峰值拖动速度。使用粒子图像测速法和热成像法跟踪所有参数下的水流。光纤抽吸尿结石模型是可行的。与低脉冲率/高脉冲能量的钬激光操作相比,高脉冲率/低脉冲能量的 TFL 操作更适合于快速、平稳地拉动结石。随着进一步的发展,这项新技术可能有助于操纵泌尿道内的结石碎片。

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