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Flexible beam guiding in a microsurgical UV laser scalpel

机译:在显微外式UV激光手术刀中引导柔性束

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摘要

Many potential microsurgical applications of UV laser radiation need a flexible beam guiding system. Especially for the argon fluorine excimer laser (λ = 193 nm) and for the 5th harmonic of the Nd:YAG laser (λ=213 nm) the use of optical fused silica fibers is difficult. In this work we designed and tested a laboratory prototype of a scalpel for surgical treatments of the retina based on UV laser ablation. To achieve the necessary flexibility and to provide laser fluences above the ablation threshold of retina we developed a new type of beam guiding device. A hollow core waveguide is used in combination with a short length of a special fused silica optical fiber to guide the laser beam. To increase the laser fluence at the distal scalpel tip and to achieve a very small cut width a fused silica fiber (core diameter 600 μm) has been tapered down to a diameter of about 150 μm. We discuss some details of the UV laser beam guiding and show the first results of laser cutting experiments.
机译:UV激光辐射的许多潜在的显微外科应用需要柔性梁引导系统。特别是对于氩氟准分子激光器(λ= 193nm)和对于Nd的第5次谐波:YAG激光(λ= 213nm),难以使用光学熔融二氧化硅纤维。在这项工作中,我们设计并测试了基于UV激光烧蚀的视网膜的手术治疗的实验室原型。为了实现必要的灵活性并提供高于Retina的消融阈值的激光流量,我们开发了一种新型的梁引导装置。中空芯波导与特殊熔融二氧化硅光纤的短长度结合使用以引导激光束。为了增加远端手术刀尖端的激光物流量并实现非常小的切割宽度,熔融石英纤维(芯直径600μm)已经逐渐变细至约150μm的直径。我们讨论了UV激光束引导的一些细节,并显示了激光切割实验的第一个结果。

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