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Hyperopic correction: clinical validation with epithelium-on and epithelium-off protocols, using variable fluence and topographically customized collagen corneal crosslinking

机译:远视矫正:采用可变通量和地形学定制的角膜交联技术,通过上皮和上皮关闭协议进行临床验证

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Purpose: To report novel application of topographically-customized collagen crosslinking aiming to achieve hyperopic refractive changes. Two approaches were evaluated, one based on epithelium-off and one based on epithelium-on (transepithelial). Methods: A peripheral annular-shaped topographically customizable design was employed for high-fluence ultraviolet (UV)-A irradiation aiming to achieve hyperopic refractive changes. A total of ten eyes were involved in this study. In group-A (five eyes), a customizable ring pattern was employed to debride the epithelium by excimer laser ablation, while in group-B (also five eyes), the epithelium remained intact. In both groups, specially formulated riboflavin solutions were applied. Visual acuity, cornea clarity, keratometry, topography, and pachymetry with a multitude of modalities, as well as endothelial cell counts were evaluated. Results: One year postoperatively, the following changes have been noted: in group-A, average uncorrected distance visual acuity changed from 20/63 to 20/40. A mean hyperopic refractive increase of +0.75 D was achieved. There was some mild reduction in the epithelial thickness. In group-B, average uncorrected distance visual acuity changed from 20/70 to 20/50. A mean hyperopic refractive increase of +0.85 D was achieved. Epithelial thickness returned to slightly reduced levels (compared to baseline) in group-A, whereas to slightly increased levels in group-B. Conclusion: We introduce herein the novel application of a topographically-customizable collagen crosslinking to achieve a hyperopic refractive effect. This novel technique may be applied either with epithelial removal, offering a more stable result or with a non-ablative and non-incisional approach, offering a minimally invasive alternative.
机译:目的:报告旨在实现远视屈光变化的地形定制胶原交联的新应用。评价了两种方法,一种基于上皮关闭,另一种基于上皮打开(经上皮)。方法:采用环形环形形貌可定制设计进行高通量紫外线(UV)-A辐照,以实现远视屈光变化。这项研究总共涉及十只眼睛。在A组(五只眼)中,采用可定制的环形图案通过准分子激光消融术清除上皮,而在B组(也是五只眼)中,上皮保持完整。在两组中,均应用了特殊配制的核黄素溶液。评估了视力,角膜清晰度,角膜曲率法,形貌和测厚法以及多种模式,以及内皮细胞计数。结果:术后一年,已注意到以下变化:在A组中,平均未矫正远视力从20/63变为20/40。平均远视屈光度增加了+0.75D。上皮厚度有轻度降低。 B组的平均未矫正远视力从20/70变为20/50。平均远视屈光度增加了+0.85D。在A组中,上皮厚度恢复到稍微降低的水平(与基线相比),而在B组中,恢复到稍微升高的水平。结论:我们在这里介绍了一种可在地形上进行胶原蛋白交联以实现远视屈光效果的新型应用。这项新技术既可以用于上皮切除术,从而提供更稳定的结果,也可以应用于非烧蚀性和非切口性方法,从而提供微创的替代方案。

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