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近视性屈光性角膜切除术后陡峭的中央岛

Steep central islands after myopic photorefractive keratectomy.

作者信息

Förster W, Clemens S, Magnago T, Elsner C, Krueger R

机构信息

University Eye Hospital Münster, Germany.

出版信息

J Cataract Refract Surg. 1998 Jul;24(7):899-904. doi: 10.1016/s0886-3350(98)80040-0.

Abstract

PURPOSE

To investigate the formation of steep central islands and their reduction under modified experimental conditions.

SETTING

University Eye Hospital Münster and Schwind Co., Kleinostheim, Germany.

METHODS

Corneas of enucleated intact bovine eyes were treated with the Schwind Keratom. All experimental conditions were repeated six times in six different corneas. Eight experimental groups were looked at. Fluence was 180 to 200 mJ/cm2. Ablation mode (phototherapeutic keratectomy ([PTK] and standard myopic photorefractive keratectomy [PRK]), internal repetition rate (3 to 30 Hz), and ablation diameter (5 to 8 mm) and depth (4 to 15 diopters [D] in PRK) were varied. Modifications to reduce or avoid steep central islands included blowing nitrogen gas and aerosol over the cornea, cleaning the cornea of fluid, and using an anti-central-island software program.

RESULTS

In PTK, an increase in the internal repetition rate resulted in a decrease in the height of the steep central island. In standard PRK, increasing refractive correction up to -8.0 D and increasing the ablation diameter resulted in an increase in steep central island power. The anti-central-island program, blowing aerosol, and cleaning the cornea reduced the formation of steep central islands and blowing nitrogen gas eliminated them.

CONCLUSION

Steep central islands are created by a wide-field ablation process and are probably caused by many factors. Both software and hardware modifications can be used to reduce their formation.

摘要

目的

研究陡峭中央岛的形成情况以及在改良实验条件下其减少的情况。

地点

德国明斯特大学眼科医院和德国克莱诺施泰姆的施温德公司。

方法

使用施温德角膜板层刀处理摘除的完整牛眼的角膜。所有实验条件在六个不同的角膜上重复六次。观察八个实验组。能量密度为180至200 mJ/cm²。改变消融模式(光治疗性角膜切削术[PTK]和标准近视性光折射角膜切削术[PRK])、内部重复频率(3至30 Hz)、消融直径(5至8 mm)以及PRK中的深度(4至15屈光度[D])。减少或避免陡峭中央岛形成的改良措施包括在角膜上吹氮气和气溶胶、清除角膜上的液体以及使用抗中央岛软件程序。

结果

在PTK中,内部重复频率增加导致陡峭中央岛的高度降低。在标准PRK中,增加屈光矫正至-8.0 D以及增大消融直径导致陡峭中央岛的度数增加。抗中央岛程序、吹气溶胶以及清洁角膜减少了陡峭中央岛的形成,而吹氮气则消除了它们。

结论

陡峭中央岛是由宽视野消融过程产生的,可能由多种因素引起。软件和硬件的改良均可用于减少其形成。

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