DESIGN OF THE MULTIORDER INTRAOCULAR LENSES

Intraocular lenses (IOLs) are used to replace the natural crystalline lens of the eye. Just few basic designs of IOLs are used clinically. Multiorder diffractive lenses (MODL) which operate simultaneously in several diffractive orders were proposed to decrease the chromatic aberration. Properties an...

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Main Authors: V. G. Kolobrodov, G. S. Tymchik, I. O. Kuchugura
Format: Article
Language:English
Published: Belarusian National Technical University 2015-12-01
Series:Pribory i Metody Izmerenij
Subjects:
Online Access:https://pimi.bntu.by/jour/article/view/225
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spelling doaj-1fdbbdbc50b14120a48198b886daf6e82021-07-29T08:39:09ZengBelarusian National Technical UniversityPribory i Metody Izmerenij2220-95062414-04732015-12-0162204210217DESIGN OF THE MULTIORDER INTRAOCULAR LENSESV. G. Kolobrodov0G. S. Tymchik1I. O. Kuchugura2National Technical University of Ukraine "Kyiv Polytechnic Institute"National Technical University of Ukraine "Kyiv Polytechnic Institute"National Technical University of Ukraine "Kyiv Polytechnic Institute"Intraocular lenses (IOLs) are used to replace the natural crystalline lens of the eye. Just few basic designs of IOLs are used clinically. Multiorder diffractive lenses (MODL) which operate simultaneously in several diffractive orders were proposed to decrease the chromatic aberration. Properties analysis of MODL showed a possibility to use them to develop new designs of IOLs. The purpose of this paper was to develop a new method of designing of multiorder intraocular lenses with decreased chromatic aberration. The theoretical research of the lens properties was carried out. The diffraction efficiency dependence with the change of wavelength was studied. A computer simulation of MODL in a schematic model of the human eye was carried out. It is found the capability of the multiorder diffractive lenses to focus polychromatic light into a segment on the optical axis with high diffraction efficiency. At each point of the segment is present each component of the spectral range, which will build a color image in combination. The paper describes the new design method of intraocular lenses with reduced chromaticism and with endless adaptation. An optical system of an eye with an intraocular lens that provides sharp vision of objects located at a distance of 700 mm to infinity is modeled.https://pimi.bntu.by/jour/article/view/225multiorder intraocular lensdiffraction efficiencyendless adaptation
collection DOAJ
language English
format Article
sources DOAJ
author V. G. Kolobrodov
G. S. Tymchik
I. O. Kuchugura
spellingShingle V. G. Kolobrodov
G. S. Tymchik
I. O. Kuchugura
DESIGN OF THE MULTIORDER INTRAOCULAR LENSES
Pribory i Metody Izmerenij
multiorder intraocular lens
diffraction efficiency
endless adaptation
author_facet V. G. Kolobrodov
G. S. Tymchik
I. O. Kuchugura
author_sort V. G. Kolobrodov
title DESIGN OF THE MULTIORDER INTRAOCULAR LENSES
title_short DESIGN OF THE MULTIORDER INTRAOCULAR LENSES
title_full DESIGN OF THE MULTIORDER INTRAOCULAR LENSES
title_fullStr DESIGN OF THE MULTIORDER INTRAOCULAR LENSES
title_full_unstemmed DESIGN OF THE MULTIORDER INTRAOCULAR LENSES
title_sort design of the multiorder intraocular lenses
publisher Belarusian National Technical University
series Pribory i Metody Izmerenij
issn 2220-9506
2414-0473
publishDate 2015-12-01
description Intraocular lenses (IOLs) are used to replace the natural crystalline lens of the eye. Just few basic designs of IOLs are used clinically. Multiorder diffractive lenses (MODL) which operate simultaneously in several diffractive orders were proposed to decrease the chromatic aberration. Properties analysis of MODL showed a possibility to use them to develop new designs of IOLs. The purpose of this paper was to develop a new method of designing of multiorder intraocular lenses with decreased chromatic aberration. The theoretical research of the lens properties was carried out. The diffraction efficiency dependence with the change of wavelength was studied. A computer simulation of MODL in a schematic model of the human eye was carried out. It is found the capability of the multiorder diffractive lenses to focus polychromatic light into a segment on the optical axis with high diffraction efficiency. At each point of the segment is present each component of the spectral range, which will build a color image in combination. The paper describes the new design method of intraocular lenses with reduced chromaticism and with endless adaptation. An optical system of an eye with an intraocular lens that provides sharp vision of objects located at a distance of 700 mm to infinity is modeled.
topic multiorder intraocular lens
diffraction efficiency
endless adaptation
url https://pimi.bntu.by/jour/article/view/225
work_keys_str_mv AT vgkolobrodov designofthemultiorderintraocularlenses
AT gstymchik designofthemultiorderintraocularlenses
AT iokuchugura designofthemultiorderintraocularlenses
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