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硅油填充眼行硅油取出联合白内障超声乳化术后 8 种公式计算人工晶状体

Intraocular Lens Calculation Using 8 Formulas in Silicone Oil-Filled Eyes Undergoing Silicone Oil Removal and Phacoemulsification After Retinal Detachment.

机构信息

From the Department of Ophthalmology, Goethe University, Frankfurt am Main, Germany.

From the Department of Ophthalmology, Goethe University, Frankfurt am Main, Germany.

出版信息

Am J Ophthalmol. 2022 Dec;244:166-174. doi: 10.1016/j.ajo.2022.07.007. Epub 2022 Jul 16.

DOI:10.1016/j.ajo.2022.07.007
PMID:35853490
Abstract

PURPOSE

To evaluate formulas for intraocular lens (IOL) calculation in silicone oil (SO)-filled eyes.

DESIGN

Retrospective, consecutive case series.

METHODS

We conducted our study at the Department of Ophthalmology, Goethe University, Frankfurt, Germany, and included SO-filled eyes that received SO removal combined with phacoemulsification and IOL implantation. Preoperative assessments included biometry (IOLMaster 700; Carl Zeiss Meditec). To evaluate the measurements, we compared the mean prediction error, and mean and median absolute prediction error of 8 different formulas.

RESULTS

A total of 90 eyes matched our inclusion criteria. The median absolute error was lowest in the Barrett Universal II formula (0.43 diopters [D] ± 0.75) followed by Kane (0.44 D ± 0.75), Hill-radial basis function (0.47 D ± 0.74), Holladay II (0.47 D ± 0.77), Sanders Retzlaff Kraff/theoretical (0.51 D ± 0.74), Holladay I (0.51 D ± 0.76), and Haigis and Hoffer Q (0.52 D ± 0.74 each). Regarding eyes within ±0.5 D Barrett Universal II (57.8%, 52 eyes) performed best, again followed by Kane (56.7%, 51 eyes) and Hill-radial basis function (54.4%, 49 eyes).

CONCLUSION

Using modern formulas for IOL calculation in oil-filled eyes improves predictability but still not as good as in unoperated eyes. This issue is created by the change in refractive index due to the SO fill and therefore a lower precision of axial length measurement and effective lens position prediction.

摘要

目的

评估硅油(SO)填充眼的人工晶状体(IOL)计算公式。

设计

回顾性连续病例系列。

方法

我们在德国法兰克福歌德大学眼科进行了这项研究,纳入了接受 SO 取出联合超声乳化白内障吸除术和 IOL 植入术的 SO 填充眼。术前评估包括生物测量(IOLMaster 700;卡尔蔡司医学技术公司)。为了评估测量值,我们比较了 8 种不同公式的平均预测误差以及平均和中位数绝对预测误差。

结果

共有 90 只眼符合纳入标准。Barrett Universal II 公式的中位数绝对误差最低(0.43 屈光度[D]±0.75),其次是 Kane(0.44 D±0.75)、Hill-radial basis function(0.47 D±0.74)、Holladay II(0.47 D±0.77)、Sanders Retzlaff Kraff/theoretical(0.51 D±0.74)、Holladay I(0.51 D±0.76)和 Haigis 和 Hoffer Q(0.52 D±0.74)。在±0.5 D 以内,Barrett Universal II (57.8%,52 只眼)的表现最佳,其次是 Kane(56.7%,51 只眼)和 Hill-radial basis function(54.4%,49 只眼)。

结论

在油填充眼中使用现代的 IOL 计算公式可以提高预测性,但仍不如未手术眼好。这个问题是由于 SO 填充导致的折射率变化引起的,因此轴向长度测量和有效晶状体位置预测的精度降低。

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