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Updated: Feb 17, 2026

Three Different Protocols of Corneal Collagen Crosslinking in Keratoconus: Conventional, Accelerated and Iontophoresis
Published on: November 12, 2015
Algorithm for Correcting the Keratometric Error in the Estimation of the Corneal Power in Keratoconus Eyes after
David P Piñero1,2,3, Vicente J Camps1, Esteban Caravaca-Arens1
1Grupo de Óptica y Percepción Visual (GOPV), Department of Optics, Pharmacology and Anatomy, University of Alicante, Alicante, Spain.
Purpose:
To analyze the errors associated to corneal power calculation using the keratometric approach in keratoconus eyes after accelerated corneal collagen crosslinking (CXL) surgery and to obtain a model for the estimation of an adjusted corneal refractive index (n ) minimizing such errors.
Methods:
Potential differences (ΔPc) among keratometric (P ) and Gaussian corneal power (PcGauss) were simulated. Three algorithms based on the use of n for the estimation of an adjusted keratometric corneal power (P ) were developed. The agreement between P (keratometric power using the keratometric index of 1.3375), PcGauss, and P was evaluated. The validity of the algorithm developed was investigated in 21 keratoconus eyes undergoing accelerated CXL.
Results:
P overestimated corneal power between 0.3 and 3.2 D in theoretical simulations and between 0.8 and 2.9 D in the clinical study (ΔPc). Three linear equations were defined for n to be used for different ranges of r1c. In the clinical study, differences between P and PcGauss did not exceed ±0.8 D n = 1.3375. No statistically significant differences were found between P and PcGauss (p > 0.05) and P and P (p < 0.001).
Conclusions:
The use of the keratometric approach in keratoconus eyes after accelerated CXL can lead to significant clinical errors. These errors can be minimized with an adjusted keratometric approach.
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