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Evaluation of corneal ablation by an optical parametric oscillator (OPO) at 2.94 um and an Er:YAG laser and comparison to ablation by a 193-nm excimer laser

机译:使用2.94 um的光学参量振荡器(OPO)和Er:YAG激光评估角膜消融,并与193 nm准分子激光进行消融比较

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Abstract: Purpose: This study first evaluated the corneal ablation characteristics of (1) an Nd:YAG pumped OPO (Optical Parametric Oscillator) at 2.94 microns and (2) a short pulse Er:YAG laser. Secondly, it compared the histopathology and surface quality of these ablations with (3) a 193 nm excimer laser. Finally, the healing characteristics over 4 months of cat eyes treated with the OPO were evaluated. Methods: Custom designed Nd:YAG/OPO and Er:YAG lasers were integrated with a new scanning delivery system to perform PRK myopic correction procedures. After initial ablation studies to determine ablation thresholds and rates, human cadaver eyes and in-vivo cat eyes were treated with (1) a 6.0 mm Dia, 30 micron deep PTK ablation and (2) a 6.0 mm Dia, $MIN@5.0 Diopter PRK ablation. Cadaver eyes were also treated with a 5.0 mm Dia, $MIN@5.0 Diopter LASIK ablation. Finally, cats were treated with the OPO in a 4 month healing study. Results: Ablation thresholds below 100 mJ/cm$+2$/ and ablation rates comparable to the excimer were demonstrated for both infrared systems. Light Microscopy (LM) showed no thermal damage for low fluence treatments, but noticeable thermal damage at higher fluences. SEM and TEM revealed morphologically similar surfaces for low fluence OPO and excimer samples with a smooth base and no evidence of collagen shrinkage. The Er:YAG and higher fluence OPO treated samples revealed more damage along with visible collagen coagulation and shrinkage in some cases. Healing was remarkably unremarkable. All eyes had a mild healing response with no stromal haze and showed topographic flattening. LM demonstrated nothing except a moderate increase in keratocyte activity in the upper third of the stroma. TEM confirmed this along with irregular basement membranes. Conclusions: A non- thermal ablation process called photospallation is demonstrated for the first time using short pulse infrared lasers yielding damage zones comparable to the excimer and healing which is also comparable to the excimer. Such Infrared sources are, therefore, potentially attractive competitors to the excimer to perform PRK and LASIK. !29
机译:摘要:目的:这项研究首先评估了(1)2.94微米Nd:YAG抽运的OPO(光学参量振荡器)和(2)短脉冲Er:YAG激光的角膜消融特性。其次,它与(3)193 nm准分子激光比较了这些消融的组织病理学和表面质量。最后,评估了用OPO治疗的猫眼在4个月内的愈合特性。方法:将定制设计的Nd:YAG / OPO和Er:YAG激光器与新的扫描传送系统集成在一起,以执行PRK近视矫正程序。在初步消融研究以确定消融阈值和速率后,对人尸体眼睛和体内猫眼进行了以下处理:(1)直径6.0毫米,深30微米深的PTK消融,以及(2)直径6.0毫米,$ MIN @ 5.0屈光度PRK消融。尸体的眼睛也接受了5.0 mm Dia,$MIN@5.0屈光度数LASIK消融术的治疗。最后,在为期4个月的康复研究中,猫用OPO进行了治疗。结果:两个红外系统的消融阈值均低于100 mJ / cm $ + 2 $ /,并且消融速率与准分子相当。光学显微镜(LM)显示低通量治疗没有热损伤,但高通量则有明显的热损伤。 SEM和TEM显示低通量OPO和受激准分子样品在形态上相似,表面光滑,没有胶原蛋白收缩的迹象。 Er:YAG和高通量OPO处理的样品在某些情况下显示出更大的损伤以及可见的胶原蛋白凝结和收缩。修复效果不明显。所有眼睛均具有轻度的愈合反应,没有间质混浊,并且显示地形平坦。 LM仅显示出在基质的上三分之一中的角膜细胞活性适度增加。 TEM证实了这一点以及不规则的基底膜。结论:首次使用短脉冲红外激光证明了一种非热消融工艺,称为光合磨蚀,产生的损伤区域可与准分子媲美,而愈合也可与准分子媲美。因此,这种红外光源可能是准分子执行PRK和LASIK的潜在竞争对手。 !29

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