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Biomechanical corneal changes induced by different flap thickness created by femtosecond laser

机译:飞秒激光产生的不同皮瓣厚度引起的生物力学角膜变化

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OBJECTIVE: To evaluate the impact of the creation of corneal flaps at different thicknesses on the biomechanical properties of swine corneas. METHOD: Twelve swine eyes were obtained to form two groups: 100 μm flap thickness and 300 μm flap thickness. Each eye was submitted to the following examinations: raster topography to investigate corneal curvature alterations, ocular response analyzer to investigate corneal hysteresis change, optical coherence tomography to measure central corneal and flap thickness and sonic wave propagation velocity as a measure of stiffness, before and immediately after flap creation. After flap amputation, surface wave velocity measurements were repeated. RESULTS: Measured flap thicknesses were statistically different for thin and thick flap groups, with an average of 108.5 + 6.9 and 307.8 + 11.5 μm respectively. Hysteresis and corneal resistance factor did not change significantly after flap creation in the thin flap group. With thicker flaps, both parameters decreased significantly from 8.0 +1.0 to 5.1 +1.5 mmHg and from 8.2 + 1.6 to 4.1 +2.5 mmHg respectively. Simulated keratometry values increased in the thick flap group (from 39.5 + 1 D to 45.9+1.2 D) after flap creation but not in the thin flap group (from 40.6 + 0.6 D to 41.4+ 1.0 D). Regarding surface wave velocity analysis, the surgical procedures induced statistically lower results in some positions. CONCLUSION: In the experimental conditions established by this model, thicker flaps presented a greater biomechanical impact on the cornea.
机译:目的:评估不同厚度的角膜瓣制作对猪角膜生物力学特性的影响。方法:获得十二只猪眼,分为两组:皮瓣厚度100μm和皮瓣厚度300μm。每只眼睛均接受以下检查:栅格地形图,以研究角膜曲率变化;眼部反应分析仪,以研究角膜滞后变化;光学相干层析成像法,以测量角膜中央和皮瓣厚度;以及声波传播速度,以测量刚度,之前和之后在创建襟翼之后。皮瓣截肢后,重复进行表面波速度测量。结果:测量的皮瓣厚度在薄和厚皮瓣组中有统计学差异,平均分别为108.5 + 6.9和307.8 + 11.5μm。薄皮瓣组皮瓣形成后,滞后和角膜抵抗因子无明显变化。皮瓣较厚时,两个参数分别从8.0 +1.0降至5.1 +1.5 mmHg,从8.2 + 1.6降至4.1 +2.5 mmHg。皮瓣形成后,厚皮瓣组的模拟角膜测量值增加(从39.5 +1 D增至45.9 + 1.2 D),而薄皮瓣组则没有(从40.6 + 0.6 D增至41.4+ 1.0 D)。关于表面波速度分析,外科手术程序在某些位置引起的统计结果较低。结论:在该模型建立的实验条件下,较厚的皮瓣对角膜的生物力学影响更大。

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