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Digital analysis of flap parameter accuracy and objective assessment of opaque bubble layer in femtosecond laser-assisted LASIK: a novel technique

机译:飞秒激光辅助LASIK皮瓣参数精度的数字分析和不透明气泡层的客观评估:一种新技术

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Background: The purpose of this study was to determine flap parameter accuracy, extent of the opaque bubble layer, and incidence of skip lines in femtosecond laser-assisted stromal in situ keratomileusis (LASIK) using the WaveLight? FS200 laser and optoelectronic clinical measurements.Methods: Images from 101 flaps were automatically recorded during consecutive routine LASIK procedures performed using the WaveLight FS200 femtosecond laser and the EX500 excimer laser. Digital processing of these images was used to evaluate objectively the diameter of FS200-created flaps, by comparing planned versus achieved procedures and to evaluate the incidence and extent (area) of the opaque bubble layer.Results: The intended flap diameters were between 8.00 mm and 9.50 mm. The achieved flap diameters showed extremely high precision, and were on average -0.16 ± 0.04 mm smaller for a 8.00 mm intended flap diameter, -0.12 ± 0.03 mm smaller for a 8.50 mm flap, and up +0.06 ± 0.06 mm wider for a 9.50 mm flap. With an average flap area of 72.4 mm2, the mean area of the opaque bubble layer (4.1 ± 4.3 [range 0–14.34] mm2) corresponded to a 6% opaque bubble layer-to-flap area. Specifically, 80% of the femtosecond-created flaps had an essentially zero opaque bubble layer (<2.7% of the flap area).Conclusion: In our clinical experience, flaps created using FS200 and this novel highly objective assessment technique demonstrate both precision and reproducibility. The incidence of opaque bubble layer was minimal.
机译:背景:这项研究的目的是使用WaveLight来确定飞秒激光辅助基质原位角膜磨镶术(LASIK)中瓣参数的准确性,不透明气泡层的范围以及跳线的发生率。 FS200激光和光电临床测量方法:使用WaveLight FS200飞秒激光和EX500准分子激光在连续的常规LASIK程序中自动记录101个皮瓣的图像。这些图像的数字处理用于通过比较计划的程序和已实现的程序来客观地评估FS200创建的瓣的直径,并评估不透明气泡层的发生率和程度(面积)。结果:预期的瓣直径在8.00 mm之间和9.50毫米。所获得的襟翼直径显示出极高的精度,对于预期的8.00 mm襟翼直径,平均减小-0.16±0.04 mm,对于8.50毫米襟翼,平均减小-0.12±0.03 mm,对于9.50,其宽度增加+0.06±0.06 mm毫米瓣。平均瓣面积为72.4 mm2,不透明气泡层的平均面积(4.1±4.3 [范围0–14.34] mm2)相当于6%的不透明气泡层与瓣的面积。具体来说,飞秒制作的皮瓣中有80%的气泡层基本上为零(小于皮瓣面积的2.7%)。结论:根据我们的临床经验,使用FS200和这种新颖的高度客观的评估技术制作的皮瓣显示出了精确性和可重复性。不透明气泡层的发生率最小。

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