Surgeons need to know more about intraocular lens design for accurate power calculation
Thomas Olsen1, David L Cooke, Oliver Findl
1From the Copenhagen Eye Center and Aros Private Hospital, Aarhus, Denmark (Olsen); Great Lakes Eye Care, Saint Joseph, Michigan (Cooke); Vienna Institute for Research in Ocular Surgery (VIROS), Hanusch Hospital, Vienna, Austria (Findl); Anterior Segment and Refractive Surgery Department, Rothschild Foundation Hospital, Paris, France (Gatinel); Cullen Eye Institute, Baylor College of Medicine, Houston, Texas (Koch); Institut für Experimentelle Ophthalmologie, Universität des Saarlandes, Homburg/Saar, Germany (Langenbucher); The Permanent Medical Group, Redwood City Medical Center, Redwood City, California (Melles); Department of Ophthalmology, Tan Tock Seng Hospital, Singapore (Yeo).
Abstract:
Improvement in biometry and formulas has raised the bar for accurate intraocular lens (IOL) power calculation. However, when we look closely at the performance of a specific IOL model, we often find that the prediction error varies with the implant power. This phenomenon has no explanation other than that the optic design of the IOL has shifted over the power range, thereby disrupting the assumptions of the calculations. By this report, we call the industry to be more transparent and disclose the basic information about the IOL design that is important for accurate IOL power calculation. The relevant information concerns the refractive index, the central optic thickness, the anterior and posterior curvature radii, the toricity location, the spherical aberration, and haptic angulation. The goal is to predict possible shifts in principal planes or IOL position over the power range causing a refractive surprise if not corrected for.
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