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用于治疗散光的靶向载体新方法。

New method of targeting vectors to treat astigmatism.

作者信息

Alpins N A

出版信息

J Cataract Refract Surg. 1997 Jan-Feb;23(1):65-75. doi: 10.1016/s0886-3350(97)80153-8.

Abstract

PURPOSE

To describe a method for optimizing the treatment of astigmatism using vector analysis of both refractive and corneal topographic values.

SETTING

Cheltenham Eye Centre, Melbourne, Australia.

METHODS

This study evaluated a method of vector analysis for planning surgery that uses both preoperative topographic and refractive values and determined how to select the relative treatment emphasis to be given to each. In addition, the significance of the phenomenon of ocular residual astigmatism (ORA) was explored. Its presence provides an inherent limitation on eliminating astigmatism from the eye's optical system.

RESULTS

Various comparisons of preoperative and ORA values are plotted in a series of 100 excimer laser photoastigmatic refractive keratectomy patients. These ORA values are equivalent to the expected corneal astigmatism resulting from surgery where treatment is performed by refractive astigmatism values alone. A theoretical example is given in which the corneal astigmatism remaining from surgery is reduced by giving less emphasis to completely eliminating refractive astigmatism and consequently greater emphasis to completely eliminating topographic astigmatism.

CONCLUSION

Using vectors in astigmatism surgery enables the incorporation of topography and refractive values into the surgical plan. This would achieve a greater reduction in corneal astigmatism and potentially a better visual outcome than using refractive astigmatism values alone.

摘要

目的

描述一种利用屈光和角膜地形图值的矢量分析来优化散光治疗的方法。

地点

澳大利亚墨尔本切尔滕纳姆眼科中心。

方法

本研究评估了一种用于手术规划的矢量分析方法,该方法使用术前地形图和屈光值,并确定如何选择对每个值给予的相对治疗重点。此外,探讨了眼残余散光(ORA)现象的意义。它的存在对从眼睛光学系统中消除散光构成了内在限制。

结果

在100例准分子激光光性屈光性角膜切削术患者中绘制了术前和ORA值的各种比较。这些ORA值等同于仅根据屈光散光值进行治疗时手术预期产生的角膜散光。给出了一个理论示例,即通过减少对完全消除屈光散光的强调,从而增加对完全消除地形图散光的强调,来降低手术残留的角膜散光。

结论

在散光手术中使用矢量能够将地形图和屈光值纳入手术计划。与仅使用屈光散光值相比,这将实现更大程度的角膜散光降低,并可能获得更好的视觉效果。

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