From the Department of Ophthalmology, Goethe University, Frankfurt am Main, Germany.
From the Department of Ophthalmology, Goethe University, Frankfurt am Main, Germany.
Am J Ophthalmol. 2022 Dec;244:166-174. doi: 10.1016/j.ajo.2022.07.007. Epub 2022 Jul 16.
To evaluate formulas for intraocular lens (IOL) calculation in silicone oil (SO)-filled eyes.
Retrospective, consecutive case series.
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.
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).
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.
评估硅油(SO)填充眼的人工晶状体(IOL)计算公式。
回顾性连续病例系列。
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。
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)。
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。