The induced defocus by Defocus Incorporated Soft Contact lenses is dependent on visual distance and ambient illuminance

Author:

Hao Jiangdong123,Lin Zhenghua234,Xi Xiaoyun23,Yang Zhikuan123,Artal Pablo14,Lan Weizhong12356ORCID

Affiliation:

1. Aier Academy of Ophthalmology Central South University Changsha China

2. Hunan Province Optometry Engineering and Technology Research Centre Changsha China

3. Hunan Province International Cooperation Base for Optometry Science and Technology Changsha China

4. Laboratorio de Óptica Universidad de Murcia Murcia Spain

5. Guangzhou Aier Eye Hospital Jinan University Guangzhou China

6. Aier School of Optometry and Vision Science Hubei University of Science and Technology Xianning China

Abstract

AbstractPurposeDefocus Incorporated Soft Contact (DISC) lenses, a commonly used type of multifocal lens in clinical practice, may slow down myopia progression by inducing myopic retinal defocus. The purpose of this study was to explore whether the induced defocus across the retina could be affected by visual environments encountered in the real world, such as differences in viewing distance and ambient illuminance.MethodsIn this cross‐over trial, 30 myopic adults wore both DISC lenses and single vision contact (SVC) lenses in random order. An open‐view Hartmann–Shack scanning wavefront sensor was used to measure defocus at different retinal locations along the horizontal meridian under four experimental conditions: far target (3 m) and near targets (0.33 m) under scotopic (<1 lux) or photopic (~300 lux) conditions.ResultsThe results showed that DISC lenses induced more myopic retinal defocus than SVC lenses in all conditions (all p < 0.05), except for the scotopic near target. In addition, for DISC lenses, the defocus was greater in the photopic than the scotopic conditions for both the far and near targets (both p < 0.05).ConclusionIn conclusion, the retinal defocus induced by these multifocal lenses was dependent on both visual distance and ambient illuminance, indicating that the visual conditions might affect the anti‐myopia efficacy of these devices.

Publisher

Wiley

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