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VRF-G, a New Intraocular Lens Power Calculation Formula: A 13-Formulas Comparison Study

机译:VRF-G,新的眼内透镜功率计算公式:13甲型比较研究

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Purpose:To compare the accuracy of a newly developed intraocular lens (IOL) power formula (VRF-G) with twelve existing formulas (Barret Universal II, EVO 2.0, Haigis, Hill-RBF 2.0, Hoffer Q, Holladay 1, Kane, N?eser 2, PEARL-DGS, SRK/T, T2 and VRF).Methods:Retrospective case series including 828 patients having uncomplicated cataract surgery with the implantation of a single IOL model (SN60WF). Using optimised constants, refraction prediction error of each formula was calculated for each eye. Subgroup analysis was performed based on the axial length (short ≤22.0mm; medium 22.0mm to 26.0mm; long ≥26.0mm). Main outcomes included mean prediction error (ME) mean (MAE) and median absolute error (MedAE), in diopters (D), and the percentage of eyes within ±0.25D, ±0.50D, ±0.75D and ±1.00D.Results:Formulas absolute errors were statistically different among them (p0.001), with Kane having the lowest MAE of all formulas, followed by EVO 2.0 and VRF-G, which had the lowest MedAE. The Kane formula had the highest percentage of eyes within ±0.25D (47.0%) and ±1.00D (97.7%) and the VRF-G formula had the highest percentage of eyes within ±0.50D (79.5%). For all AL subgroups, Kane, EVO 2.0 and VRF-G formulas had the most accurate performances (lowest MAE).Conclusion:New generation formulas may help us in achieving better refractive results, lowering the variance in accuracy in extreme eyes - Kane, EVO 2.0 and VRF-G formulas are promising candidates to fulfil that goal.? 2020 Hipólito-Fernandes et al.
机译:目的:比较新开发的人工晶状体(IOL)电量公式(VRF-G)的准确性,具有十二个现有公式(Barret Upplience II,Evo 2.0,Haigis,Hill-RBF 2.0,Hoffer Q,Holladay 1,Kane,N ?ESER 2,珍珠DGS,SRK / T,T2和VRF)。方法:回顾性案例系列,包括828名具有简单性白内障手术的患者,植入单一IOL模型(SN60WF)。使用优化的常数,针对每只眼睛计算每个公式的折射预测误差。基于轴向长度(短≤22.0mm;中> 22.0mm至<26.0mm;长≥26.0mm)进行亚组分析。主要结果包括平均预测误差(ME)平均值(MAE)和中位绝对误差(MEDAE),在屈光度(D)中,眼睛百分比±0.25d,±0.50d,±0.75d和±1.00d。结果:在它们中,公式绝对误差在它们(P <0.001)中具有统计学不同(P <0.001),kane具有所有公式的最低MAE,其次是EVO 2.0和VRF-G,其MEDAE最低。凯恩公式的眼睛百分比±0.25D(47.0%)和±1.00D(97.7%),VRF-G公式的眼睛百分比±0.50d(79.5%)。对于所有AL子组,KANE,EVO 2.0和VRF-G公式具有最准确的性能(最低MAE)。结论:新一代公式可能有助于我们实现更好的屈光结果,降低极端眼睛的准确性方差 - 凯恩,EVO 2.0和VRF-G公式是履行该目标的承诺候选人。 2020Hipólito-Fernandes等。

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