Area of research
Ophthalmology · Epidemiology
Research interest
Research interests include Ophthalmology and Visual Impairment Studies, Corneal surgery and disorders, Intraocular Surgery and Lenses, and Glaucoma and retinal disorders.
Retrospective Analysis of IOL Power Calculation by Ray Tracing in Eyes with Previous Radial Keratotomy.
Meridional analysis for calculation of the toric power of phakic IOLs.
Optical confirmation by a thick-lens formula of the optimized A-constant (as calculated by a thin-lens formula) of a new intraocular lens.
Theoretical influence of segmented axial length on intraocular lens power calculation in short eyes.
Comparison of intraocular lens formula accuracy for eyes with prior scleral buckle surgery.
Comparison of intraocular lens power formulas for negative diopter intraocular lens implantation for high myopia.
Clinical Review of Cataract and Power Calculation: Part I
Clinical Review of Cataract and Power Calculation: Part II
IOL Power Calculation by Ray Tracing in Eyes with Previous Radial Keratotomy
Personal history of the silicone phakic posterior chamber intraocular lens
Spherical equivalent prediction analysis in intraocular lens power calculations using Eyetemis: a comprehensive approach
Spherical equivalent prediction analysis in intraocular lens power calculations using Eyetemis: a comprehensive approach.
Differences Between Keratometry and Total Keratometry Measurements in a Large Dataset Obtained With a Modern Swept Source Optical Coherence Tomography Biometer.
Comment on: Efficacy of segmented axial length and artificial intelligence approaches to intraocular lens power calculation in short eyes.
Comparison of keratometry and total corneal power, as measured by an SS-OCT-based optical biometer, for intraocular lens power calculation in Asian eyes.
Comparison of the new Hoffer QST with 4 modern accurate formulas
Method to analyze the refractive outcomes of online intraocular lens power formulas.
Optical Biometry and IOL Calculation in a Commercially Available Optical Coherence Tomography Device and Comparison With Pentacam AXL.
Accuracy of Haigis Formula Using Total Keratometry for IOL Power Calculation in Eyes with Previous Myopic and Hyperopic LASIK and PRK
Optical Biometry and IOL Calculation in a Commercially Available Optical Coherence Tomography Device and Comparison With Pentacam AXL
Agreement of intraocular lens power calculation between 2 SS-OCT-based biometers.
Split-Window OCT biometry in pseudophakic eyes.
Update on Intraocular Lens Power Calculation Study Protocols: The Better Way to Design and Report Clinical Trials.
Repeatability of automated measurements by a new anterior segment optical coherence tomographer and biometer and agreement with standard devices
Comparison of 13 formulas for IOL power calculation with measurements from partial coherence interferometry.
Repeatability of total Keratometry and standard Keratometry by the IOLMaster 700 and comparison to total corneal astigmatism by Scheimpflug imaging.
Clinical Accuracy of 18 IOL Power Formulas in 241 Short Eyes.
Update on Intraocular Lens Power Calculation Study Protocols
Recent developments in intraocular lens power calculation methods—update 2020
Comparison of 13 formulas for IOL power calculation with measurements from partial coherence interferometry