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Strategies to Regulate Myopia Progression With Contact Lenses: A Review
José M González-Méijome1, Sofia C Peixoto-de-Matos, Miguel Faria-Ribeiro
1Clinical & Experimental Optometry Research Lab (J.M.G-M., S.C.P-d-M., M.F-R., D.P.L-P., J.J., A.Q.), Center of Physics, University of Minho, Braga, Portugal; and Private Practice (J.L.), San Diego, CA.
Purpose:
Higher myopic refractive errors are associated with serious ocular complications that can put visual function at risk. There is respective interest in slowing and if possible stopping myopia progression before it reaches a level associated with increased risk of secondary pathology. The purpose of this report was to review our understanding of the rationale(s) and success of contact lenses (CLs) used to reduce myopia progression.
Methods:
A review commenced by searching the PubMed database. The inclusion criteria stipulated publications of clinical trials evaluating the efficacy of CLs in regulating myopia progression based on the primary endpoint of changes in axial length measurements and published in peer-reviewed journals. Other publications from conference proceedings or patents were exceptionally considered when no peer-review articles were available.
Results:
The mechanisms that presently support myopia regulation with CLs are based on the change of relative peripheral defocus and changing the foveal image quality signal to potentially interfere with the accommodative system. Ten clinical trials addressing myopia regulation with CLs were reviewed, including corneal refractive therapy (orthokeratology), peripheral gradient lenses, and bifocal (dual-focus) and multifocal lenses.
Conclusions:
CLs were reported to be well accepted, consistent, and safe methods to address myopia regulation in children. Corneal refractive therapy (orthokeratology) is so far the method with the largest demonstrated efficacy in myopia regulation across different ethnic groups. However, factors such as patient convenience, the degree of initial myopia, and non-CL treatments may also be considered. The combination of different strategies (i.e., central defocus, peripheral defocus, spectral filters, pharmaceutical delivery, and active lens-borne illumination) in a single device will present further testable hypotheses exploring how different mechanisms can reinforce or compete with each other to improve or reduce myopia regulation with CLs.
Insights
Contact lenses (CLs) are effective for myopia control in children, with orthokeratology showing the most significant results across diverse populations. Future research will explore combined strategies for enhanced myopia regulation.
Area of Science:
- Ophthalmology
- Optometry
- Vision Science
Background:
- High myopia increases the risk of serious ocular complications, threatening visual function.
- Slowing or halting myopia progression is crucial to prevent secondary pathologies.
Purpose of the Study:
- To review the rationale and efficacy of contact lenses (CLs) in reducing myopia progression.
- To synthesize current understanding of CLs for myopia control.
Main Methods:
- Systematic review of PubMed-published clinical trials on CLs for myopia regulation.
- Inclusion criteria focused on axial length changes as the primary endpoint.
- Consideration of non-peer-reviewed sources when necessary.
Main Results:
- Reviewed ten clinical trials on myopia regulation using CLs.
- Evaluated methods include orthokeratology, peripheral gradient lenses, and bifocal/multifocal lenses.
- Mechanisms involve altering peripheral defocus and foveal image quality.
Conclusions:
- Contact lenses are safe, consistent, and well-accepted for myopia regulation in children.
- Orthokeratology demonstrates the highest efficacy in myopia regulation across ethnic groups.
- Future CLs may combine multiple strategies for improved myopia control.
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