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YAG:Er laser device for microsurgery treatment of a human lens cataract

机译:YAG:用于人晶状体白内障显微手术的Er激光装置

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Abstract: We have designed a laser complex which is a combination of a YAG:Er laser operating in the free-running mode, a radiation delivery system based on a chalcogenide fiber with uniquely high damage threshold, and a diagnostic optical coherent tomography (OCT) device for in situ monitoring of surface layers of the tissue under treatment. A flexible chalcogenide glass multimode fiber operates with pulse energy 150 mJ at a repetition rate of 3 Hz. Neither degradation nor laser damage were observed after transmission of 10$+4$/ laser pulses through the fiber delivery instrument. This complex was employed to study the effect of YAG:Er laser radiation on a cataract-suffered human lens. The laser ablation process has been monitored by OCT. During the lens treatment the image of ablation crater and inner layers with a scanning depth of several millimeters and spatial resolution of 15 micrometers was available. The kinetics of pulse-to-pulse ablation crater growth a well as of the adjacent thermally damaged zone formation were investigated. !8
机译:摘要:我们设计了一种激光复合体,该复合体由以自由运行模式运行的YAG:Er激光,基于具有独特高损伤阈值的硫属化物纤维的放射线传输系统以及诊断性光学相干断层扫描(OCT)组合而成用于原位监测治疗中的组织表面层的装置。柔性硫族化物玻璃多模光纤以3 Hz的重复频率以150 mJ的脉冲能量工作。通过光纤传输仪器传输10 $ + 4 $ /个激光脉冲后,未观察到降解或激光损坏。该复合物用于研究YAG:Er激光辐射对患有白内障的人晶状体的影响。 OCT已对激光烧蚀过程进行了监视。在晶状体治疗过程中,可获得扫描深度为几毫米,空间分辨率为15微米的烧蚀坑和内层图像。研究了脉冲到脉冲的烧蚀坑生长以及相邻的热损坏区形成的动力学。 !8

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