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优化飞秒激光参数获取的内皮角膜移植纽扣的界面质量。

Interface quality of endothelial keratoplasty buttons obtained with optimised femtosecond laser settings.

机构信息

Assistance Publique-Hôpitaux de Paris, Department of Ophthalmology, Hôtel-Dieu Hospital, Paris, France.

出版信息

Br J Ophthalmol. 2012 Jan;96(1):122-7. doi: 10.1136/bjophthalmol-2011-300463. Epub 2011 Oct 15.

Abstract

AIM

To optimise interfaces of endothelial buttons created with femtosecond (FS) lasers.

SETTING

Department of Ophthalmology, Hôtel-Dieu Hospital, Paris, France.

METHODS

Forty-two corneas were divided into five groups of various cutting patterns and a control group of 100 μm laser in situ keratomileusis flap creation. A single path full lamellar cut (500 μm) was applied to groups 1 and 2. The same full lamellar cut was applied twice to groups 3 and 4. Two successive lamellar cuts were performed in group 5 (350 and 150 μm). 60 kHz and 150 kHz were used respectively in groups 1, 3, 5, 6 and 2, 4. In each group, different laser settings were tested to obtain the best interface quality while delivering minimal energy to the stroma. The quality of stromal interfaces from created endothelial lenticules was observed using a scanning electron microscope.

RESULTS

Stromal adherences persisted after both the single- and double-path procedure, creating central irregularities on the endothelial lenticule. Among all groups and settings tested, the double-layer pattern (group 5) with FS full lamellar cut parameters set for diameter (mm), depth (μm), energy (μJ) and spot size/step (μm) respectively on 9.0 mm, 350 μm, 2.1 μJ, 4:4 μm and 8.3 mm, 150 μm, 0.9 μJ, 4:4 μm created the smoothest interfaces with the best reproducibility.

CONCLUSIONS

Buttons for endothelial keratoplasty can be created with FS laser with a stromal interface quality comparable with that of refractive surgery.

摘要

目的

优化飞秒(FS)激光制作的内皮纽扣的界面。

设置

法国巴黎 Hôtel-Dieu 医院眼科。

方法

42 个角膜分为 5 组,分别为不同的切割模式和对照组(100 μm 的激光原位角膜磨镶术瓣)。第 1 组和第 2 组应用单一全层切割(500 μm)。第 3 组和第 4 组对同一全层切割进行两次应用。第 5 组进行两次连续的板层切割(350 和 150 μm)。第 1、3、5、6 组分别使用 60 kHz 和 150 kHz,第 2、4 组分别使用 2、4。在每组中,测试不同的激光设置,以在向基质传递最小能量的同时获得最佳界面质量。使用扫描电子显微镜观察创建的内皮透镜的基质界面质量。

结果

单次和双路径程序后基质粘连仍然存在,在内皮透镜上造成中央不规则。在所有测试的组和设置中,双层模式(第 5 组)采用 FS 全层切割参数,直径(mm)、深度(μm)、能量(μJ)和光斑大小/步长(μm)分别为 9.0 mm、350 μm、2.1 μJ、4:4 μm 和 8.3 mm、150 μm、0.9 μJ、4:4 μm,创建了最光滑的界面,具有最佳的可重复性。

结论

FS 激光可用于制作内皮角膜移植术的纽扣,其基质界面质量可与屈光手术相媲美。

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