DocumentCode
740306
Title
Quantifying the Multiwavelength Dispersion Effect on Dioptric Power Measurement of Intraocular Lenses
Author
Walker, Bennett N. ; James, Robert H. ; Calogero, Don ; Ilev, Ilko K.
Author_Institution
Opt. Therapeutics & Med. Nanophotonics Lab., U.S. Food & Drug Adm., Silver Spring, MD, USA
Volume
7
Issue
4
fYear
2015
Firstpage
1
Lastpage
7
Abstract
Improving technology and high demand has prompted a rapidly evolving intraocular lens (IOL) industry. To keep up with the improved designs, optical property evaluation techniques need to be adapted quickly to ensure IOL safety and efficacy. Identifying critical parameters are essential in evaluating IOL optical properties, which include temperature, medium, and test light characteristics. Here, we present a novel preclinical quantitative study of the dispersion effect that the wavelength of exposed test light has on IOL optical properties, specifically dioptric power. Dioptric power levels of IOLs were measured using a confocal laser method (CLM) when exposed to various wavelengths throughout the visible spectrum. Results showed statistically significant yet minimal focal point shift and, therefore, dioptric power changes ( $sim$0.15D) due to the effect of test light wavelength, similar to known wavelength-dependent relationships associated with changes in refractive index. Further evaluation of critical parameters can lead to an improvement of IOL product designs and overall public health.
Keywords
lenses; optical design techniques; optical dispersion; CLM; IOL; confocal laser method; dioptric power measurement; dispersion effect; intraocular lenses; multiwavelength dispersion effect; optical property evaluation techniques; refractive index; visible spectrum; Biomedical optical imaging; Lenses; Optical refraction; Optical variables control; Power measurement; Refractive index; Wavelength measurement; Optics; biophotonics; confocal microscopy; intraocular lens; wavelength of light;
fLanguage
English
Journal_Title
Photonics Journal, IEEE
Publisher
ieee
ISSN
1943-0655
Type
jour
DOI
10.1109/JPHOT.2015.2460119
Filename
7206777
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