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In vivo Confocal Microscopy Report after Lasik with Sequential Accelerated Corneal Collagen Cross-Linking Treatment

机译:Lasik连续加速角膜胶原交联治疗后的体内共聚焦显微镜报告

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摘要

We report the first pilot qualitative confocal microscopic analysis of a laser in situ keratomileusis (Lasik) treatment combined with sequential high-fluence accelerated corneal collagen cross-linking, denominated Lasik XTra, by means of HRT II laser scanning in vivo confocal microscopy after a 6-month follow-up. After obtaining approval from the Siena University Hospital Institutional Review Board, a 33-year-old female patient underwent a Lasik XTra procedure in her left eye. Confocal analysis demonstrated induced slight corneal microstructural changes by the interaction between UV-A, riboflavin and corneal stromal collagen, beyond the interface to a depth of 160 µm, without adverse events at the interface and endothelial levels. This application may be considered a prophylactic biomechanical treatment, stiffening the intermediate corneal stroma to prevent corneal ectasia and stabilizing the clinical results of refractive surgery. According to our preliminary experiences, this combined approach may be useful in higher-risk Lasik patients for hyperopic treatments, high myopia and lower corneal thicknesses.
机译:我们报告了HRT II激光扫描体内共聚焦显微镜后,对激光原位角膜磨镶术(Lasik)治疗与相继高通量加速角膜胶原交联相结合的第一个定性共聚焦显微镜分析,命名为Lasik XTra。个月的随访。在获得锡耶纳大学医院机构审查委员会的批准后,一名33岁的女性患者左眼接受了Lasik XTra手术。共聚焦分析表明,UV-A,核黄素和角膜基质胶原之间的相互作用引起了角膜微结构的轻微变化,超过了界面深度达160 µm,在界面和内皮水平均无不良反应。该应用可以被认为是一种预防性生物力学治疗,可以使中间角膜基质变硬,以防止角膜扩张,并稳定屈光手术的临床效果。根据我们的初步经验,这种组合方法可能对高风险Lasik患者进行远视治疗,高度近视和降低角膜厚度有用。

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