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◆ Clinical ophthalmology (Auckland, N.Z.)2026-01-01

Inter-Formula Variability in IOL Power Planning in Short and Long Eyes: A Retrospective Paired Comparison of Seven ESCRS-Hosted Formulas and the Ladas Super Formula 2.0.

Michal Klimek, Andreas Földesi, Dejan Botic, Valerie Golsch, Rafah Khandour, Maximilian Tamberger, Agnes Boltz, Pia Veronika Vécsei-Marlovits

一句话结论 · In one sentence

Modern IOL power formulas frequently disagree on the recommended power in short and long eyes despite comparable published accuracy. Because postoperative outcomes were not assessed, these findings quantify planning-level variability only; disagreement should alert surgeons to planning uncertainty in these eyes.

原始摘要(英文原文)· Original abstract
PURPOSE: To quantify the frequency, magnitude, and direction of inter-formula planning variability in intraocular lens (IOL) power calculation at the extremes of axial length, comparing seven European Society of Cataract and Refractive Surgeons (ESCRS)-hosted formulas and the Ladas Super Formula 2.0, and to identify preoperative predictors of clinically relevant disagreement. METHODS: In this retrospective, single-center, paired within-eye planning study, the recommended IOL power and predicted spherical equivalent were generated for short (axial length <22 mm) and long (>26 mm) eyes from identical biometry (IOLMaster 700) across the seven formulas on three IOL platforms. A clinically relevant discrepancy (ClinRel) was defined as a within-eye range ≥1 step (≥0.5 D) in recommended power or ≥0.25 D in predicted spherical equivalent across the seven formulas. Firth-penalized logistic regression identified predictors in the long stratum. RESULTS: A total of 1020 eyes (551 short, 469 long) of 665 patients were analyzed. On the primary platform, ClinRel occurred in 98.2% of short and 62.7% of long eyes, reproduced on all three platforms and in one-eye-per-patient analyses. Per-formula mean signed differences vs Barrett Universal II were small (-0.11 to +0.16 D), yet the seven formulas diverged by ≥2 steps in 33.8% of short eyes. Hill-RBF 3.0 was out-of-bounds in ~30% of eyes; the Ladas Super Formula 2.0 (n = 311) was not a directional outlier. In long eyes, axial length was the strongest predictor (Firth odds ratio 1.55 per 1 SD; 95% CI 1.23-1.95), with no clean threshold (Youden axial length/corneal radius ratio 3.52; sensitivity 35.5%, specificity 96.0%). CONCLUSIONS: Modern IOL power formulas frequently disagree on the recommended power in short and long eyes despite comparable published accuracy. Because postoperative outcomes were not assessed, these findings quantify planning-level variability only; disagreement should alert surgeons to planning uncertainty in these eyes.
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Inter-Formula Variability in IOL Power Planning in Short and Long Eyes: A Retrospective Paired Comparison of Seven ESCRS-Hosted Formulas and the Ladas Super Formula 2.0. — 科研速览 Science Skim