Paola Marolo, Enrico Borrelli, Guglielmo Parisi, Francesca Cimorosi, Federica Lo Cascio, Federica Trastu, Lorena Ulla, Gian Marco Tosi, Maria Francesca Lisa, Matteo Fallico, Mario Damiano Toro, Vincenza Maria Elena Bonfiglio, Michele Reibaldi
The Barrett Universal II and Kane formulas showed significantly better refractive prediction accuracy than third-generation formulas in eyes undergoing secondary sutureless intrascleral fixation of a one-piece foldable IOL. Axial length variability and IOL tilt significantly impacted PE across all formulas, underscoring the importance of biometric and anatomical factors in surgical planning.
PURPOSE: To compare the refractive prediction accuracy of five intraocular lens (IOL) power calculation formulas in eyes undergoing secondary sutureless intrascleral fixation of a one-piece foldable IOL and to assess biometric and anatomical factors associated with prediction error (PE).
METHODS: This post-hoc comparative formula analysis of a prospective interventional case series (24-month follow-up) included adult patients undergoing secondary implantation of a foldable single-piece IOL. IOL power was calculated using the SRK/T, Hoffer Q, Holladay 1, Barrett Universal II, and Kane formulas. Primary outcomes included PE, mean absolute error (MAE), and the proportion of eyes within PE of ±0.50 and ±1.00 diopters (D). Subgroup analysis using anterior segment optical coherence tomography evaluated associations between PE, IOL tilt, and decentration. Main outcome measures were MAE, proportion of eyes within PE ±0.50 and ±1.00 D, and correlation between PE and anatomical parameters (axial length, tilt, decentration).
RESULTS: A total of 226 eyes were included. MAE was lowest with Barrett Universal II (0.44 ± 0.37 D) and Kane (0.46 ± 0.39 D) (P < .0001, analysis of variance). The proportion of eyes with PE within ±0.50 D was 69.0% (129 of 187) for Barrett Universal II, 66.3% (124 of 187) for Kane, 53.5% (121 of 226) for SRK/T, 52.2% (118 of 226) for Hoffer Q, and 51.3% (116 of 226) for Holladay 1 (P < .0001, chi-square test). The proportion within ±1.00 D was 90.9% (170 of 187), 90.9% (170 of 187), 83.6% (189 of 226), 83.2% (188 of 226), and 82.3% (186 of 226), respectively (P < .0001, chi-square test). PE >±1.00 D was significantly associated with axial length <22 mm (myopic shift) or >26 mm (hyperopic shift) across all formulas (P = .022). In 86 eyes, IOL tilt showed a positive correlation with PE for Kane (B = 0.136, P < .001) and a weak negative correlation for Barrett Universal II (B = -0.062, P < .001), whereas no significant association was found for decentration (P > .05).
CONCLUSIONS: The Barrett Universal II and Kane formulas showed significantly better refractive prediction accuracy than third-generation formulas in eyes undergoing secondary sutureless intrascleral fixation of a one-piece foldable IOL. Axial length variability and IOL tilt significantly impacted PE across all formulas, underscoring the importance of biometric and anatomical factors in surgical planning.