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戈金诺莫格罗姆在计算散光人工晶体柱镜度数时 0.50D 步长的准确性。

Accuracy of the Goggin Nomogram for 0.50 D Steps in Toric IOL Cylinder Power Calculation.

出版信息

J Refract Surg. 2022 May;38(5):298-303. doi: 10.3928/1081597X-20220404-01. Epub 2022 May 1.

Abstract

PURPOSE

To examine the accuracy of the cylinder power choice for toric intraocular lenses (IOLs) using the Goggin Nomogram, which adjusts anterior keratometric astigmatic power values for the likely effect of posterior corneal and non-corneal, non-lenticular astigmatism.

METHODS

A consecutive, retrospective case series was based at the Queen Elizabeth Hospital and Ashford Advanced Eye Care in Adelaide, Australia. A total of 586 consecutive eyes of 586 patients underwent phacoemulsification surgery with implantation of a Zeiss AT TORBI 709MP or AT LISA Tri Toric 939 MP toric IOL, calculated using the Goggin Nomogram. The median absolute magnitude of error and geometric mean astigmatic correction index in consecutive eyes with toric IOL cylinder powers of 1.00 to 3.00 diopters (D) were analyzed.

RESULTS

Overall, all eyes receiving IOL cylinder powers of 1.00 to 3.00 D inclusive had a median magnitude of error value of 0.19 D (IQR: 0.31) and astigmatic correction index value of 1.03 (IQR: 0.33). For eyes with with-the-rule, against-the-rule, and oblique astigmatism, the median magnitude of error was 0.18 D (interquartile range [IQR]: 0.29), 0.19 D (IQR: 0.31), and 0.17 D (IQR: 0.39), respectively, and the astigmatic correction index was 1.06 (IQR: 0.28), 1.01 (IQR: 0.35) and 1.08 (IQR: 0.32), respectively.

CONCLUSIONS

Goggin Nomogram adjusted keratometry provided optimal refractive astigmatic outcome in IOL cylinder powers of 1.00 to 3.00 D in eyes with with-the-rule, against-the-rule, and oblique astigmatism. Goggin Nomogram adjusted keratometry compensates for both posterior corneal astigmatism and any other source of ocular astigmatism. .

摘要

目的

使用 Goggin 诺莫图检查用于矫正散光的 toric 人工晶状体(IOL)的圆柱镜度数选择的准确性,该图调整了前角膜散光的测量值,以考虑到后角膜散光和非角膜、非晶状体散光的可能影响。

方法

这是一项在澳大利亚阿德莱德的伊丽莎白女王医院和阿什福德高级眼科护理中心进行的连续回顾性病例系列研究。共有 586 例 586 只眼接受了白内障超声乳化手术,并植入了蔡司 AT TORBI 709MP 或 AT LISA Tri Toric 939MP 散光 IOL,这些 IOL 的度数是使用 Goggin 诺莫图计算的。分析了连续接受 1.00 至 3.00 屈光度(D)圆柱镜度数的 toric IOL 眼的中位绝对误差幅度和几何平均散光矫正指数。

结果

总体而言,所有接受 1.00 至 3.00D inclusive 的 IOL 圆柱镜度数的眼的中位误差幅度值为 0.19D(四分位距 [IQR]:0.31),散光矫正指数值为 1.03(IQR:0.33)。对于顺规散光、逆规散光和斜轴散光的眼,中位误差幅度分别为 0.18D(四分位距 [IQR]:0.29)、0.19D(IQR:0.31)和 0.17D(四分位距 [IQR]:0.39),散光矫正指数分别为 1.06(IQR:0.28)、1.01(IQR:0.35)和 1.08(IQR:0.32)。

结论

在顺规散光、逆规散光和斜轴散光的眼,Goggin 诺莫图调整的角膜曲率计在 1.00 至 3.00D 的 IOL 圆柱镜度数中提供了最佳的屈光性散光结果。Goggin 诺莫图调整的角膜曲率计补偿了后角膜散光和任何其他来源的眼散光。

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