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Myopia Progression With a Novel Extended Depth of Focus Contact Lens

Myopia Progression in Children and Adolescents Before and After Use of a Novel Extended Depth of Focus Daily Disposable Soft Contact Lens

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03358862
Enrollment
80
Registered
2017-12-02
Start date
2017-01-01
Completion date
2022-07-01
Last updated
2021-01-12

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Myopia, Myopia, Progressive

Keywords

myopia, progressive myopia, contact lenses, extended depth of focus, retrospective clinical series, axial length, refractive error

Brief summary

Myopia has been increasing in prevalence and severity throughout the world over the last 30 years. Increasing levels of myopia are associated with increased frequencies and severity of various ocular pathologies, including cataracts, glaucoma, retinal detachments and other retinal pathologies and myopic maculopathy. Slowing myopia progression at a young age before the eye reaches excessive axial length may help to reduce the future risks of these ocular pathologies. Conventional spectacles and contact lenses are prescribed correct myopia by moving the central focus of the eye for distance viewing from in front of the retina to on the retina centrally, or at the fovea. To varying degrees, these lenses allow the light to focus behind the retina, at varying peripheral retinal locations. These findings have led to efforts to design spectacle and contact lenses which correct peripheral hyperopic defocus, to reduce myopia progression. The consensus theory for how both multifocal contact lenses and orthokeratology can control myopia progression is that they each can reduce, eliminate, or reverse relative peripheral hyperopic defocus. Existing published studies on the use of multifocal contact lenses to control myopia in humans have utilized lenses with the distance correction in the center with peripheral plus power to correct the peripheral blur. Until recently, there have been no daily disposable multifocal lenses in the US market with distance center designs. The NaturalVue contact lens from Visioneering Technologies, Inc. is the first daily disposable distance center multifocal in the US. It has a novel extended depth of focus design where the distance correction is in the center of the optical zone, surrounded by a zone characterized by having a seamless, rapid transition from the distance power to a highly plus power at the edge of the optical zone. This study will analyze the myopia progression of patients in the investigator's practice while wearing their habitual visual corrections for periods up to two years prior to being switched to NaturalVue contact lenses. They will then be followed for up to two years after beginning use of this novel lens design and the differences in their myopia progression after versus before this novel lens will be analyzed. Axial lengths will be measured with the IOLMaster after switching to NaturalVue, at six-month intervals and will be compared to axial lengths which have been collected with habitual corrections.

Detailed description

Myopia has been increasing in prevalence and severity throughout the world over the last 30 years. Increasing levels of myopia are associated with increased frequencies and severity of various ocular pathologies, including cataracts, glaucoma, retinal detachments and other retinal pathologies and myopic maculopathy. Slowing myopia progression at a young age before the eye reaches excessive axial length may help to reduce the future risks of these ocular pathologies. Conventional spectacles and contact lenses are prescribed to correct myopia by moving the central focus of the eye for distance viewing from in front of the retina to on the retina centrally, or at the fovea. To varying degrees, these lenses allow the light to focus behind the retina, at varying peripheral retinal locations. These findings have led to efforts to design spectacle and contact lenses which correct peripheral blur to reduce myopia progression. The consensus theory for how both multifocal contact lenses and orthokeratology can control myopia progression is that they each can reduce, eliminate, or reverse relative peripheral hyperopic defocus. Existing published studies on the use of multifocal contact lenses to control myopia in humans have utilized lenses with the distance correction in the center with peripheral plus power to correct the peripheral hyperopic defocus. Until recently, there have been no daily disposable multifocal lenses in the US market with distance center designs. The NaturalVue contact lens from Visioneering Technologies, Inc. is the first daily disposable distance center multifocal in the US. It has a novel extended depth of focus design where the distance correction is in the center of the optical zone, surrounded by a zone with a seamless, rapid transition from the distance power to a highly plus power at the edge of the optical zone. This study will analyze the myopia progression of patients in the investigator's practice while wearing their habitual visual corrections for periods up to two years prior to being switched to NaturalVue contact lenses. They will then be followed for up to two years after beginning use of this novel lens design and the differences in their myopia progression after NaturalVue versus before NaturalVue will be analyzed. Axial lengths will be measured with the IOLMaster after switching to NaturalVue, at six-month intervals and will be compared to axial lengths which have been collected with habitual corrections.

Interventions

DEVICENaturalVue Multifocal Contact Lens

NaturalVue multifocal contact lenses are daily disposable, distance center, multifocals with a novel extended depth of focus optical design. Patients wearing their habitual corrections who opt to change to this new lens will have their myopia progression monitored for up to two years.

Sponsors

Visioneering Technologies, Inc
CollaboratorINDUSTRY
Aller, Thomas A., OD
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
OTHER

Eligibility

Sex/Gender
ALL
Age
5 Years to 25 Years
Healthy volunteers
Yes

Inclusion criteria

* Myopic refractive error * Astigmatism less than -2.50 D * Evidence from clinical record of myopia progression equal to or greater than -0.50 D in at least one eye since the prior examination * Ability to see 20/30 or better in the worse eye and 20/25 or better binocularly after one week adaptation * Ability to properly insert, remove and care for study lens

Exclusion criteria

* Moderate to severe allergic conjunctivitis * Moderate to severe dry eyes * Keratoconus or other related corneal irregularity * Strabismus * Amblyopia * Nystagmus

Design outcomes

Primary

MeasureTime frameDescription
Refractive error changesData will be collected at baseline and at every six months.Changes in myopia over time will be characterized by the spherical equivalent refractive error as measured by manifest subjective refraction.
Axial length of the eyeData will be collected at baseline and at every six months.Changes in the axial length of the eye will be measured with the Zeiss IOLMaster

Secondary

MeasureTime frameDescription
Corneal curvatureData will be collected at baseline and at every six monthsKeratometry will be measured by the Zeiss IOLMaster
Vitreous Chamber DepthData will be collected at baseline and at every six months.Vitreous Chamber Depth will be derived from measures of the Anterior Chamber Depth and the axial length as measured by the Zeiss IOLMaster.

Countries

United States

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026