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NCT Number: NCT07387159

Effect of MiYOSMART iQ Spectacle Lenses on Myopia Progression in Children

This prospective, single-center study aims to evaluate the efficacy and safety of MiYOSMART iQ spectacle lenses with DIMS (Defocus Incorporated Multiple Segments) and Triple Enhanced Design (TED) technology in slowing myopia progression in children aged 8-11 years.

35 children with myopia (spherical equivalent -0.5 to -6.0 D) will be prescribed MiYOSMART iQ lenses and followed for 6 months. The study will compare changes in spherical equivalent refraction and axial length against a historical control group (n=35) using ANCOVA. Secondary outcomes include measurements of peripheral refraction and contrast sensitivity at the first prescription.

The study hypothesis is that wearing MiYOSMART iQ lenses for 6 months significantly slows myopia progression compared to single-vision spectacle correction.

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Key information

Age range

8 year–11 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Helmholtz National Medical Research Center of Eye Diseases

Moscow, 105062, Russia

Location status: Recruiting

Location contact

Elena Tarutta, MD, PhD

CONTACT

[email protected]

+7(916)121-19-53

About this study

Introduction and Scientific Rationale Progressive myopia in children is a global public health problem associated with an increased risk of ocular pathology in adulthood. Existing myopia control methods demonstrate efficacy, but there is a need for additional non-pharmacological, non-invasive approaches with a high safety profile and patient acceptability.

MiYOSMART iQ spectacle lenses with DIMS and Triple Enhanced Design (TED) technology represent a modern method of optical myopia control, based on the concept of peripheral myopic defocus.

The efficacy of MiYOSMART lenses has been proven in a number of studies, primarily in Asian populations. However, some physiological aspects of their effect, especially in Caucasian populations and in real-world clinical practice, require further study:

Insufficient data on the precise pattern of induced peripheral defocus when using open-field instruments.

Lack of studies on the effect of defocus segments on contrast sensitivity.

Need for evaluation of key parameter dynamics (refraction, AL) in Russian children.

Scientific Hypothesis: Wearing MiYOSMART iQ spectacles for 6 months leads to a statistically significant slowing of myopia progression (by SE and AL) compared to historical control and causes characteristic, measurable changes in peripheral refraction and contrast sensitivity parameters, detectable at first prescription.

Study Objectives and Endpoints

  • Primary Objective To evaluate the effect of MiYOSMART iQ spectacle lenses on myopia progression after 6 months of wear compared to a historical control group.

Primary Endpoints:

Change in Spherical Equivalent of refraction (SE, D) under cycloplegia (Visit 3 - Visit 1).

Change in Axial Length (AL, mm) (Visit 3 - Visit 1).

  • Secondary Objectives

To characterize the state of the visual system at the first prescription of MiYOSMART iQ lens correction.

Endpoint 1: Peripheral refraction (D) indicators at various retinal points, measured with an open-field autorefractometer without correction and with new spectacles at Visit 2.

Endpoint 2: Spatial contrast sensitivity (log units) indicators for various spatial frequencies, measured with the "Mesotest" device in a trial frame and with new spectacles at Visit 2.

To assess the tolerability and safety of MiYOSMART iQ lens correction over 6 months.

Endpoint: Frequency, nature, and severity of all recorded Adverse Events (AEs) and Device Deficiencies (DDs).

Study Design and Methodology

  • Overall Design. Prospective, interventional, single-center study with a historical control group. Responsibility for conduct and scientific supervision rests with the Principal Investigator - Elena P. Tarutta.
  • Visits and Procedures. The overall schedule is presented below.

Visit 1 (Day 0, Baseline): Informed Consent, Medical History; Visual Acuity (uncorrected, with habitual and optimal correction); Autorefractometry (narrow/wide pupil); Biometry (Axial Length); Binocular Vision, Phoria, AC/A Ratio; Choroidal Thickness Measurement; Recording of Adverse Events/Device Deficiencies.

Visit 2 (within 3±1 weeks after V1): Visual Acuity with new MiYOSMART iQ spectacles; Contrast Sensitivity (Mesotest) in trial frame and new spectacles; Peripheral Refraction without correction and with new spectacles; Dispensing of MiYOSMART iQ spectacles; Recording of Adverse Events/Device Deficiencies.

Visit 3 (Month 6±1 after V1): Visual Acuity with MiYOSMART iQ spectacles; Autorefractometry; Biometry (Axial Length); Binocular Vision, Phoria, AC/A Ratio; Choroidal Thickness Measurement; Recording of Adverse Events/Device Deficiencies.

  • Historical Control Group. Formed retrospectively from the research center's database. Includes patients who met the current study criteria and used single-vision spectacle correction for at least 6 months. Groups will be matched by age (±1 year) and baseline SE (±0.5 D).

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Age 8-11 years (inclusive)
  • Myopia: spherical equivalent -0.5 to -6.0 D under cycloplegia
  • No previous myopia control treatment
  • Orthophoria, presence of binocular vision

Exclusion criteria

  • Corrected visual acuity < 0.8 (decimal)
  • Anisometropia > 2.0 D
  • Strabismus history or presence
  • Previous refractive or intraocular surgery

Treatment and study plan

MiYOSMART iQ spectacle lenses

Device

MiYOSMART iQ are single-vision spectacle lenses made of polycarbonate (refractive index 1.59) featuring Defocus Incorporated Multiple Segments (DIMS) technology with Triple Enhanced Design (TED). The lens contains a central optical zone for clear distance vision, surrounded by multiple, uniformly distributed micro-lens segments (diameter: ~1.00 mm) that create a consistent myopic defocus signal of +4.50 D across the peripheral retina. This specific optical design aims to slow axial elongation in progressing myopia. The intervention involves full-time wear of spectacles with these lenses. The device is CE-marked and has Russian registration certificate No. ФСЗ 2012/11555 dated December 5, 2024

Primary outcomes

  1. Change in Axial Length

    Time frame: Baseline to 6 months

    Change in axial length, measured in millimeters (mm)

  2. Change in Spherical Equivalent Refraction

    Time frame: Baseline to 6 months

    Change in cycloplegic spherical equivalent refraction, measured in diopters (D)

Secondary outcomes

  1. Peripheral Refraction

    Time frame: At first prescription (Visit 2, within 3±1 weeks after baseline)

    Peripheral refraction values at various retinal points (e.g., 20° and 30° nasally, temporally, superiorly, inferiorly), measured in diopters (D) with an open-field autorefractometer, without correction and with new MiYOSMART iQ spectacles

  2. Contrast Sensitivity

    Time frame: At first prescription (Visit 2, within 3±1 weeks after baseline)

    Spatial contrast sensitivity (log units) for various spatial frequencies, measured with the "Mesotest" device in a trial frame and with new MiYOSMART iQ spectacles

  3. Safety - Incidence of Adverse Events

    Time frame: Throughout the study period, up to 6 months

    Frequency, nature, and severity of all recorded Adverse Events (AEs) and Device Deficiencies (DDs) related to the use of MiYOSMART iQ spectacles.

Study contacts

Contact information is provided by the study sponsor or research team.

Elena Tarutta, MD, PhD

CONTACT

[email protected]

+7(916)121-19-53

Nikolai Makukha

CONTACT

[email protected]

+7(968)88-55-942

Sponsors and collaborators

Lead sponsor

Hoya Lens Rus LLC

Industry

Collaborators

  • Helmholtz National Medical Research Center of Eye Diseases

Registry information

Official study title

Prospective, Interventional, Single-center Study to Evaluate the Influence of MiYOSMART iQ Spectacle Lenses With DIMS and Triple Enhanced Design Technology on Refraction Dynamics, Biometric Parameters, Peripheral Refraction and Contrast Sensitivity in Children With Myopia

Important dates

Study start
2026
Primary completion
2026
Study completion
2027
First posted
Feb 4, 2026
Registry last updated
Feb 6, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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