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准分子原位角膜磨镶术后人工晶状体屈光度调整列线图

Intraocular lens power adjustment nomogram after laser in situ keratomileusis.

作者信息

Diehl Joseph W, Yu Fei, Olson Michael D, Moral Joel N, Miller Kevin M

机构信息

Jules Stein Eye Institute and Department of Ophthalmology, David Geffen School of Medicine at UCLA, Los Angeles, California 90095-7002, USA.

出版信息

J Cataract Refract Surg. 2009 Sep;35(9):1587-90. doi: 10.1016/j.jcrs.2009.04.038.

Abstract

PURPOSE

To develop a nomogram for improving the accuracy of intraocular lens (IOL) power calculation at the time of cataract surgery based on the manifest refraction spherical equivalent (MRSE) change produced by laser in situ keratomileusis (LASIK).

SETTING

University-based clinical practice, Jules Stein Eye Institute, Los Angeles, California, USA.

METHODS

This was a retrospective review of the records of consecutive patients who had cataract surgery after LASIK. Spherical equivalent refractive data before and after LASIK and cataract surgery were recorded. The differences between the targeted postoperative refractive errors after cataract surgery and the achieved refractive errors were plotted against the LASIK-induced MRSE change, yielding postoperative refractive errors to target during IOL power calculation to achieve emmetropia.

RESULTS

Thirty-two eyes of 23 patients were identified; 25 eyes had myopic LASIK and 7, hyperopic LASIK. Regression analysis yielded the following polynomial relationship: target postoperative refractive error (D) to achieve emmetropia during IOL power calculation = -0.018(MRSE Change)(2) + 0.192(MRSE Change) - 0.062. The outcomes in 97% of eyes fell within +/-1.00 D of the value predicted by this formula.

CONCLUSIONS

A 2nd-order polynomial relationship was found between LASIK-induced MRSE change and the MRSE error after cataract surgery. From this equation, a simple adjustment nomogram was generated and put into a look-up table format. The formula and nomogram should improve IOL power calculation accuracy in post-LASIK eyes when the MRSE change is known.

摘要

目的

基于准分子原位角膜磨镶术(LASIK)产生的显验光球镜等效度(MRSE)变化,开发一种列线图,以提高白内障手术时人工晶状体(IOL)屈光力计算的准确性。

设置

美国加利福尼亚州洛杉矶市朱尔斯·斯坦眼科研究所的大学临床实践机构。

方法

这是一项对LASIK术后行白内障手术的连续患者记录的回顾性研究。记录LASIK术前、术后及白内障手术前后的球镜等效度屈光数据。将白内障手术后目标屈光不正与实际屈光不正之间的差异与LASIK诱导的MRSE变化作图,得出IOL屈光力计算时达到正视所需的术后屈光不正目标值。

结果

确定了23例患者的32只眼;25只眼行近视性LASIK,7只眼行远视性LASIK。回归分析得出以下多项式关系:IOL屈光力计算时达到正视所需的目标术后屈光不正(D)=-0.018(MRSE变化)²+0.192(MRSE变化)-0.062。97%的眼睛的结果落在该公式预测值的±1.00 D范围内。

结论

发现LASIK诱导的MRSE变化与白内障手术后的MRSE误差之间存在二阶多项式关系。根据该方程,生成了一个简单的调整列线图,并以查找表的形式呈现。当已知MRSE变化时,该公式和列线图应能提高LASIK术后眼睛IOL屈光力计算的准确性。

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