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Femtosecond Laser Beam Propagation through Corneal Tissue: Evaluation of Therapeutic Laser-Stimulated Second and Third-Harmonic Generation

机译:飞秒激光束通过角膜组织的传播:激光治疗性第二和第三谐波产生的评估

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摘要

One of the most recent advancements in laser technology is the development of ultrashort pulsed femtosecond lasers (FSLs). FSLs are improving many fields due to their unique extreme precision, low energy and ablation characteristics. In the area of laser medicine, ophthalmic surgeries have seen very promising developments. Some of the most commonly performed surgical operations in the world, including laser-assisted in-situ keratomileusis (LASIK), lens replacement (cataract surgery), and keratoplasty (cornea transplant), now employ FSLs for their unique abilities that lead to improved clinical outcome and patient satisfaction.The application of FSLs in medical therapeutics is a recent development, and although they offer many benefits, FSLs also stimulate nonlinear optical effects (NOEs), many of which were insignificant with previously developed lasers. NOEs can change the laser characteristics during propagation through a medium, which can subsequently introduce unique safety concerns for the surrounding tissues. Traditional approaches for characterizing optical effects, laser performance, safety and efficacy do not properly account for NOEs, and there remains a lack of data that describe NOEs in clinically relevant procedures and tissues. As FSL technology continues to expand towards new applications, FSL induced NOEs need to be better understood in order to ensure safety as FSL medical devices and applications continue to evolve at a rapid pace.In order to improve the understanding of FSL-tissue interactions related to NOEs stimulated during laser beam propagation though corneal tissue, research investigations were conducted to evaluate corneal optical properties and determine how corneal tissue properties including corneal layer, collagen orientation and collagen crosslinking, and laser parameters including pulse energy, repetition rate and numerical aperture affect second and third-harmonic generation (HG) intensity, duration and efficiency. The results of these studies revealed that all laser parameters and tissue properties had a substantial influence on HG. The dynamic relationship between optical breakdown and HG was responsible for many observed changes in HG metrics. The results also demonstrated that the new generation of therapeutic FSLs has the potential to generate hazardous effects if not carefully controlled. Finally, recommendations are made to optimize current and guide future FSL applications.
机译:激光技术的最新进展之一是超短脉冲飞秒激光器(FSL)的开发。 FSL由于其独特的极高精度,低能耗和消融特性,正在改善许多领域。在激光医学领域,眼科手术的发展非常可观。世界上一些最常执行的外科手术,包括激光辅助原位角膜磨镶术(LASIK),晶状体置换术(白内障手术)和角膜移植术(角膜移植),现在采用FSL的独特功能可改善临床结果和患者满意度。FSL在医学治疗中的应用是最近的发展,尽管它们提供了很多好处,但FSL还可以刺激非线性光学效应(NOE),其中许多与以前开发的激光器无关紧要。 NOE可以在传播通过介质的过程中改变激光特性,从而可能对周围组织造成独特的安全隐患。表征光学效应,激光性能,安全性和功效的传统方法不能正确地解释NOE,并且仍然缺乏描述临床相关程序和组织中NOE的数据。随着FSL技术不断向新应用扩展,随着FSL医疗设备和应用的快速发展,需要对FSL诱导的NOE进行更好的理解以确保安全性。在通过角膜组织传播激光束期间激发NOE,进行了研究调查以评估角膜的光学特性,并确定角膜组织特性(包括角膜层,胶原蛋白取向和胶原蛋白交联)以及激光参数(包括脉冲能量,重复率和数值孔径)如何影响第二和第三波长。第三谐波产生(HG)的强度,持续时间和效率。这些研究的结果表明,所有激光参数和组织特性对HG都有很大影响。光学击穿和HG之间的动态关系是导致HG指标中许多观察到的变化的原因。结果还表明,如果不仔细控制,新一代治疗性FSL可能会产生有害作用。最后,提出了一些建议,以优化当前的FSL应用并指导未来的FSL应用。

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    Calhoun William R III;

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  • 年度 2015
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