Related Experiment Video
Updated: Jun 15, 2025

Author Spotlight: Advancements in Refractive Surgical Correction for Presbyopia and Exploring Postoperative Visual Acuity
Published on: September 20, 2024
Accuracy of predicted refraction using two swept-source optical coherence biometers and an intraoperative aberrometer
1From the Minami Osaka Eye Clinic, Kumatori-cho, Sennan-gun, Osaka, Japan.
Purpose:
To compare the refractive accuracy of Optiwave Refractive Analysis (ORA) using biometric measurements of ARGOS and OA-2000 in the same patient planned for a monofocal intraocular lens (IOL) insertion.
Setting:
Single center.
Design:
Prospective, observational study.
Methods:
Patients scheduled for cataract surgery between January 2021 and March 2022 (expected corrected distance visual acuity of ≥0.8 postoperatively at 1 to 3 months) underwent preoperative ocular measurements using ARGOS and OA-2000 biometers on the same day, which were entered into the intraoperative aberrometer ORA system to assess the refractive accuracy of the IOL implant and postoperative spherical equivalent at 1 to 3 months. The refractive accuracy was compared between ORA using ARGOS (ORA-AR) and ORA using OA-2000 (ORA-OA). The primary endpoint was the comparison of the mean absolute refractive prediction error (MAE) between the ORA-AR and ORA-OA methods.
Results:
A total of 117 eyes of 81 patients were evaluated (mean ± SD age, 72.8 ± 7.4 years; male, 65.4%). The criteria for noninferiority were met between the ORA-AR and ORA-OA methods because the upper boundary of the CI was lower than the noninferiority margin of 0.10 diopter [D] for the difference in MAE (-0.03 D; 95% CI, -0.061 to 0.001). MAE was numerically smaller with ORA-AR (0.243 ± 0.215 D) but not significantly different from that with ORA-OA (0.269 ± 0.246 D).
Conclusions:
Postoperative MAE obtained using ORA-AR was noninferior to that of ORA-OA. However, the MAE and SD of refractive prediction errors with ORA-AR were numerically lower than those with ORA-OA.

