Multifocal intraocular lenses incorporate a variety of design considerations, including dimensioning of the base monofocal shape and the diffraction grating. While studying three different lens models, we present a practical approach for mathematical modelling and evaluation of these geometries. Contrary to typical lens measurement methods, non-contact measurements were performed on the Alcon SN6AD1, HumanOptics MS 612 DAY and the AMO ZMA00 lenses using a confocal microscope. Subsequent data processing includes centering, tilting correction, filtering and an algorithmic decomposition into a conic and polynomial part and the diffraction grating. Lastly, evaluation of fitting parameters and grating shape is done to allow for inferences about ...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
The optical engineering exploration in making the capable of diffractive multifocal Intraocular lens...
To test the feasibility of using profilometers to extract information about IOL surfaces design. A s...
The resolution of diffractive, bifocal intraocular lenses was studied with regard to pupil displacem...
Purpose: To experimentally compare the optical performance of three types of hydrophobic intraocu...
Purpose To describe the optical performances of 3 types of diffractive hydrophobic intraocular lens...
This paper deals with the optical characterization of diffractive multifocal Intra-Corneal Lenses (I...
In this work, we use low magnification microscopy and white light interferometry (WLSI) to perform 3...
International audienceThe aim of this paper is to compare the properties of four different profiles ...
PURPOSE: To experimentally compare the optical performance of three types of hydrophobic intraocula...
A bifocal lens function has been difficult to achieve in a contact lens. As a solution to the proble...
Thesis (Ph. D.)--University of Rochester. Dept. of Biomedical Engineering, 2008.This dissertation co...
INTRODUCTION: To establish the most appropriate curve fitting method to allow accurate comparison of...
16 pages, 5 figures.-- OCIS codes: 220.3620, 220.4830, 330.4460.We propose a complete methodology to...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
The optical engineering exploration in making the capable of diffractive multifocal Intraocular lens...
To test the feasibility of using profilometers to extract information about IOL surfaces design. A s...
The resolution of diffractive, bifocal intraocular lenses was studied with regard to pupil displacem...
Purpose: To experimentally compare the optical performance of three types of hydrophobic intraocu...
Purpose To describe the optical performances of 3 types of diffractive hydrophobic intraocular lens...
This paper deals with the optical characterization of diffractive multifocal Intra-Corneal Lenses (I...
In this work, we use low magnification microscopy and white light interferometry (WLSI) to perform 3...
International audienceThe aim of this paper is to compare the properties of four different profiles ...
PURPOSE: To experimentally compare the optical performance of three types of hydrophobic intraocula...
A bifocal lens function has been difficult to achieve in a contact lens. As a solution to the proble...
Thesis (Ph. D.)--University of Rochester. Dept. of Biomedical Engineering, 2008.This dissertation co...
INTRODUCTION: To establish the most appropriate curve fitting method to allow accurate comparison of...
16 pages, 5 figures.-- OCIS codes: 220.3620, 220.4830, 330.4460.We propose a complete methodology to...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
The optical engineering exploration in making the capable of diffractive multifocal Intraocular lens...