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Optimal laser parameters for intrastromal corneal surgery

机译:基质内角膜手术的最佳激光参数

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Abstract: We characterized the effects of pulse duration, pulse energy, and spot separation on intrastromal corneal photodisruption to determine parameters that achieve optimal surface quality and tissue plane separation. Experiments utilized two laser systems, a 60 picosecond Nd:YLF laser and a 450 femtosecond Nd:Glass laser, both operating at 1.06 $mu@m wavelength. Photodisruption was performed by tightly focusing the laser beam 150 microns below the tissue surface and scanning it in a spiral pattern to create a plane. A cut to the surface was made with the laser and the two surfaces separated to form a flap. Tissue plane separation was graded according to the additional mechanical dissection required. Internal surfaces were analyzed with standard histologic methods and scanning electron microscopy. We found that the Nd:YLF laser required approximately three times the pulse energy to achieve intrastromal cuts. Picosecond parameters also required more mechanical dissection and produced lower surface quality than optimal femtosecond parameters. We conclude that femtosecond laser pulses offer significant advantages that make them ideal candidate tools for high precision intrastromal corneal surgery. The flexibility in laser pulse delivery opens up a number of potential surgical applications not possible with current mechanical or laser devices.!24
机译:摘要:我们表征了脉冲持续时间,脉冲能量和斑点分离对基质内角膜光破裂的影响,以确定可实现最佳表面质量和组织平面分离的参数。实验利用了两个激光系统,一个60皮秒的Nd:YLF激光器和一个450飞秒的Nd:Glass激光器,它们都在1.06μm的波长下工作。通过将激光束紧紧聚焦在组织表面下方150微米并以螺旋形扫描以形成平面来进行光破坏。用激光切割表面,将两个表面分开以形成折板。组织平面分离根据所需的其他机械解剖分级。用标准组织学方法和扫描电子显微镜分析内表面。我们发现,Nd:YLF激光器需要大约三倍的脉冲能量才能实现基质内切割。与最佳飞秒参数相比,皮秒参数还需要更多的机械解剖并产生较低的表面质量。我们得出的结论是,飞秒激光脉冲具有明显的优势,使其成为高精度基质内角膜手术的理想候选工具。激光脉冲传输的灵活性开辟了许多潜在的外科应用,而这是当前机械或激光设备无法实现的!24

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