Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye aft er the implantation of diffractive or refractive multifocal intraocular lenses (IOLs). Materials and Methods: This was a prospective, interventional, comparative, nonrandomized clinical study. Uncorrected distance and near visual acuity, and wavefront analysis including MTF curves (iTrace aberrometer, Tracey Technologies, Houston, TX, USA) were measured in 60 patients aft er bilateral IOL implantation with 6 months of follow-up. Forty eyes received the diffractive ReSTOR (Alcon), 40 eyes received the refractive ReZoom (Advanced Medical Optics) and 40 eyes, the Tecnis ZM900 (Advanced Medical Optics). The comparison of MTF and aberration bet...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
(1) Background: This study aimed to evaluate and compare the clinical optical image quality followin...
Purpose To evaluate and compare the optical performances of 4 different types of intraocular lenses...
Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye a...
Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye a...
Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye ...
PURPOSE: To evaluate intraindividual visual acuity, wavefront errors and modulation transfer functio...
PURPOSE: To determine whether the improvement in intermediate vision after bilateral implantation of...
PURPOSE: To evaluate intraindividual visual acuity, wavefront errors and modulation transfer functio...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
Purpose: To compare postoperative vision, high-order aberrations, contrast sensitivity, power of acc...
PURPOSE: To compare postoperative wavefront aberration and visual functions between aspherical Tecni...
PURPOSE: To evaluate visual performance and wavefront error after multifocal intraocular lens (MIOL)...
Purpose To describe the optical performances of 3 types of diffractive hydrophobic intraocular lens...
Purpose: To experimentally compare the optical performance of three types of hydrophobic intraocu...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
(1) Background: This study aimed to evaluate and compare the clinical optical image quality followin...
Purpose To evaluate and compare the optical performances of 4 different types of intraocular lenses...
Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye a...
Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye a...
Purpose: To evaluate wavefront performance and modulation transfer function (MTF) in the human eye ...
PURPOSE: To evaluate intraindividual visual acuity, wavefront errors and modulation transfer functio...
PURPOSE: To determine whether the improvement in intermediate vision after bilateral implantation of...
PURPOSE: To evaluate intraindividual visual acuity, wavefront errors and modulation transfer functio...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
Purpose: To compare postoperative vision, high-order aberrations, contrast sensitivity, power of acc...
PURPOSE: To compare postoperative wavefront aberration and visual functions between aspherical Tecni...
PURPOSE: To evaluate visual performance and wavefront error after multifocal intraocular lens (MIOL)...
Purpose To describe the optical performances of 3 types of diffractive hydrophobic intraocular lens...
Purpose: To experimentally compare the optical performance of three types of hydrophobic intraocu...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
(1) Background: This study aimed to evaluate and compare the clinical optical image quality followin...
Purpose To evaluate and compare the optical performances of 4 different types of intraocular lenses...