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一种优化人工晶状体屈光力计算中零均值或最小标准差或均方根预测误差公式常数的简单策略的性能评估

Performance Evaluation of a Simple Strategy to Optimize Formula Constants for Zero Mean or Minimal Standard Deviation or Root-Mean-Squared Prediction Error in Intraocular Lens Power Calculation.

作者信息

Langenbucher Achim, Szentmáry Nóra, Wendelstein Jascha, Cayless Alan, Hoffmann Peter, Gatinel Damien

机构信息

From the Department of Experimental Ophthalmology (A.L., J.W.), Saarland University, Homburg/Saar, Germany.

Dr. Rolf M. Schwiete Center for Limbal Stem Cell and Aniridia Research (N.S.), Saarland University, Homburg/Saar, Germany; Department of Ophthalmology (N.S.), Semmelweis University Budapest, Budapest, Hungary.

出版信息

Am J Ophthalmol. 2025 Jan;269:282-292. doi: 10.1016/j.ajo.2024.08.043. Epub 2024 Sep 12.

Abstract

PURPOSE

To investigate the performance of a simple prediction scheme for the formula constants optimized for a mean (MPE), standard deviation (SDPE) or root-mean-squared refractive prediction error (RMSPE).

DESIGN

Retrospective cross-sectional study.

METHODS

Using IOLMaster 700 biometric data from 888 eyes treated with the Hoya Vivinex lens and 821 eyes treated with the Alcon SA60AT lens, plus the power of the implanted lens and postoperative spherical equivalent refraction, optimized constants for SRKT, Hoffer Q, Holladay 1, Haigis, and K6 formulae were calculated using an iterative nonlinear optimization for zero MPE and minimal SDPE and RMSPE. Start values were detuned by ±1.5 from the MPE optimized constants and formula constants generated using the simple prediction scheme were compared to the corresponding directly optimized constants.

RESULTS

For all 5 formulae under test and with both datasets, constants optimized using the simple scheme showed excellent agreement with those from the iterative method with either MPE or RMSPE used as the optimization metric and good agreement with SDPE as the metric. Constants optimized for zero MPE or minimal RMSPE agreed within 0.05, whereas constants for minimal SDPE could be systematically off by up to 0.6 from the MPE values, making SDPE unsuitable as an optimization metric.

CONCLUSIONS

This simple formula constant optimization scheme performs excellently for 4 disclosed formulae and one nondisclosed formula in our 2 monocentric datasets with zero MPE or minimal RMSPE as metrics. Multicentric studies with other study populations and biometers are required to further investigate the clinical applicability.

摘要

目的

研究一种简单预测方案在针对平均屈光预测误差(MPE)、标准差屈光预测误差(SDPE)或均方根屈光预测误差(RMSPE)进行优化的公式常数方面的性能。

设计

回顾性横断面研究。

方法

使用来自888只接受Hoya Vivinex人工晶状体治疗的眼睛和821只接受Alcon SA60AT人工晶状体治疗的眼睛的IOLMaster 700生物测量数据,加上植入人工晶状体的度数和术后等效球镜度,通过迭代非线性优化计算SRKT、Hoffer Q、Holladay 1、Haigis和K6公式的优化常数,以实现零MPE以及最小的SDPE和RMSPE。起始值在MPE优化常数的基础上上下调整±1.5,并将使用简单预测方案生成的公式常数与相应的直接优化常数进行比较。

结果

对于所有5个测试公式以及两个数据集,使用简单方案优化的常数与以MPE或RMSPE作为优化指标的迭代方法得到的常数显示出极佳的一致性,而以SDPE作为指标时则显示出良好的一致性。针对零MPE或最小RMSPE优化的常数相差在0.05以内,而针对最小SDPE优化的常数与MPE值可能会系统性地相差高达0.6,这使得SDPE不适宜作为优化指标。

结论

在我们的两个单中心数据集中,以零MPE或最小RMSPE作为指标时,这种简单的公式常数优化方案在4个公开公式和1个未公开公式上表现出色。需要使用其他研究人群和生物测量仪进行多中心研究,以进一步探究其临床适用性。

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