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在动物眼中使用扫描基质内皮秒和飞秒激光脉冲进行板层屈光手术。

Lamellar refractive surgery with scanned intrastromal picosecond and femtosecond laser pulses in animal eyes.

作者信息

Kurtz R M, Horvath C, Liu H H, Krueger R R, Juhasz T

机构信息

W.K. Kellogg Eye Center, Department of Ophthalmology, University of Michigan, Ann Arbor 48105, USA.

出版信息

J Refract Surg. 1998 Sep-Oct;14(5):541-8. doi: 10.3928/1081-597X-19980901-12.

Abstract

PURPOSE

To evaluate the use of scanned intrastromal picosecond and femtosecond laser pulses in lamellar refractive surgical procedures.

METHODS

Intrastromal corneal photodisruption was performed in fresh porcine and primate cadaver eyes with a solid-state femtosecond laser. Laser pulses were focused 150 to 200 microns below the epithelial surface and scanned in a spiral pattern to create a plane. A flap was made by scanning an arc pattern from the plane of the spiral to the surface of the cornea. Tissue plane separation was graded using a standard scale, while internal surfaces were analyzed by scanning electron microscopy. Comparison was made to a picosecond laser system using the same delivery system device. Creation of a stromal lenticule for in situ keratomileusis was also demonstrated and compared with both laser systems.

RESULTS

For femtosecond pulses, tissue separation was achieved best with pulse energies from 4 to 8 microJ and spot separations from 10-15 microns. Picosecond pulses accomplished less complete separations with pulse energies of 25 microJ and spot separations from 10 to 20 microns. Surface quality corresponded to dissection results, with high-grade dissections resulting in a smooth surface appearance, versus a more irregular surface for low-grade dissections. Although high-grade dissections could be created with picosecond pulses (with optimal parameters) in ex vivo porcine eyes, only femtosecond parameters produced similar results in ex vivo primate eyes.

CONCLUSION

In contrast to previous attempts using picosecond lasers which require additional mechanical dissection, high precision lamellar refractive surgery may be practical with femtosecond laser pulses.

摘要

目的

评估扫描基质内皮秒和飞秒激光脉冲在板层屈光手术中的应用。

方法

使用固态飞秒激光在新鲜猪眼和灵长类动物尸体眼上进行基质内角膜光破裂。激光脉冲聚焦于上皮表面下方150至200微米处,并以螺旋模式扫描以形成一个平面。通过从螺旋平面到角膜表面扫描弧形图案制作瓣。使用标准量表对组织平面分离进行分级,同时通过扫描电子显微镜分析内表面。使用相同的传输系统设备与皮秒激光系统进行比较。还展示了用于原位角膜磨镶术的基质透镜的制作,并与两种激光系统进行比较。

结果

对于飞秒脉冲,在脉冲能量为4至8微焦且光斑间距为10 - 15微米时,组织分离效果最佳。皮秒脉冲在脉冲能量为25微焦且光斑间距为10至20微米时,分离效果不太完全。表面质量与切割结果相对应,高质量切割导致表面外观光滑,而低质量切割则表面更不规则。尽管在离体猪眼中使用皮秒脉冲(具有最佳参数)可以进行高质量切割,但只有飞秒参数在离体灵长类动物眼中产生了类似的结果。

结论

与先前使用皮秒激光需要额外机械切割的尝试不同,使用飞秒激光脉冲进行高精度板层屈光手术可能是可行的。

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