Skip to main content
OpenTrials
Recruiting

NCT Number: NCT06177977

SS-HH-OCT as a Novel Diagnostic Modality for Early-Onset Retinal Dystrophies (EORDs)

The goal of this observational study is to utilize a novel imaging system designed for high-resolution retinal imaging of neonates, infants and children to identify the signs of photoreceptor development and degeneration in children with early-onset inherited retinal dystrophies (EORDs). Participants will have research imaging with SS-HH-OCT at the time of clinically-indicated eye examinations or procedures. The investigators aim to establish the basis for utilization of OCT imaging in earlier diagnosis and disease monitoring in children with EORDs. This work will set data reference standards and IRD endpoints that can be used in clinical trials.

Recruiting

Interested in participating?

Request Info

Key information

Age range

0 year–8 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Duke University Eye Center

Durham, North Carolina, 27710, United States

Location status: Recruiting

Location contact

Cynthia A Toth, MD

SUB_INVESTIGATOR

Mays Dairi, MD

SUB_INVESTIGATOR

Michelle McCall

CONTACT

[email protected]

919-684-0544

Neeru Sarin

CONTACT

[email protected]

9196685641

Ramiro Maldonado, MD

PRINCIPAL_INVESTIGATOR

About this study

What photoreceptor degenerative changes take place in children with early-onset inherited retinal dystrophies, and how is photoreceptor development in this patient population affected by genetic defects?

Our novel investigational SS-HH-OCT system features high scanning speed, long laser wavelength, and an ergonomic light-weight handheld design. The investigators hypothesize that imaging with this system will enable us to characterize early-onset retinal dystrophies (EORD)-associated PDCs in young children. To this end, the investigators propose the following specific aims:

Specific Aim 1: Optimize and demonstrate reproducibility of SS-HH-OCT imaging protocols to visualize photoreceptor development and degeneration in children with and without EORDs.

Specific Aim 2: Use SS-HH-OCT parameters to characterize biomarkers of foveal photoreceptor development and degeneration in children with EORDs versus healthy controls.

A total of 80 participants will be enrolled in this study. Participants' age between 0 through 8 years (<9 years).

For children with EORD, successful completion of this study will result in 1) a framework for reproducible OCT imaging; 2) characterization of biomarkers of retinal degeneration; 3) establishment of reference data by genetic variants 4) insights into foveal development. Additionally, this study will set pilot data of structure-function data and timeline of photoreceptor degeneration for future NIH funded studies.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

For all participants:

  • Participant's age is between 0 through 8 years (<9 years)
  • Parent/legal guardian gives consents for the imaging study
  • No ocular media opacities that could preclude imaging
  • Refractive error equal or lower than 6 diopters

For EORD participants (Groups 1-2):

Meets clinical and molecular diagnosis of EORD (clinical determined by PI). Molecular diagnosis criteria:

  • Autosomal dominant gene: One pathogenic or likely pathogenic variant that meets the clinical phenotype
  • Autosomal recessive gene: two pathogenic or likely pathogenic variants in-trans which meet the phenotype.
  • X-linked gene: one pathogenic or likely pathogenic variant which meets the phenotype.

For Controls (Group 3): No evidence of retinal pathology

Exclusion criteria

For all participants:

  • Parent/legal guardian unwilling or unable to provide consent
  • Refractive error higher than 6.00 diopters
  • Participant has media opacities that preclude imaging
  • Any non-IRD ocular condition that confound results interpretation such as glaucoma, uveitis, neurologic conditions affecting the optic nerve, etc.

For EORD participants (Groups 1-2): Does not meet molecular diagnosis criteria

For Controls (Group 3): Any suspicion of IRD

Treatment and study plan

SS-HH-OCT

Device

The investigational swept source OCT systems with handheld UC handpieces used in this study were developed at Duke University. OCT systems are non-contact, in-vivo optical imaging technology. The OCT system creates real-time, non-invasive images of ocular microstructure. OCT devices held above or in front of the eye while the sweeping infrared OCT beam scans across the retina. In contrast to the visible light used in clinical eye examinations, because infrared light is not visible, the participant is not disturbed by the light. OCT imaging allows the capture of hundreds of B-scan (cross-sectional) images in seconds. These B-scans are then stacked to create a volume; the stack may be summed up to create a retinal image. These retinal images are similar to images acquired during retinal photography except that they were captured with infrared light and provide depth information. Each volume and B-scan image can be viewed individually to measure and analyze ocular pathology.

Other names: Swept-source Handheld Ultracompact Optical Coherence Tomography (HH UC OCT)

Primary outcomes

  1. Number of participants with abnormal microanatomy as measured by OCT reading

    Time frame: Up to 24 months

    Presence of abnormal retinal microanatomy as measured by OCT reading

  2. Thickness of the participants retina at the fovea and surrounding optic nerve as measured by OCT reading

    Time frame: Up to 24 months

    Retinal thickness (microns) at the fovea and surrounding optic nerve

Study contacts

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

Michelle N McCall, MCAPM, BA

CONTACT

[email protected]

(919) 684-0544

Ramiro Maldonado, MD

CONTACT

[email protected]

(919) 684 5631

Sponsors and collaborators

Lead sponsor

Duke University

Other

Registry information

Official study title

Ultracompact Hand-Held Swept-Source Optical Coherence Tomography (SS-HH-OCT) as a Novel Diagnostic Modality for Early-Onset Retinal Dystrophies (EORDs)

Acronym: SS-HH-OCT

Important dates

Study start
2024
Primary completion
2026
Study completion
2026
First posted
Dec 20, 2023
Registry last updated
Oct 6, 2025

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.

Published trials that share one or more normalized conditions with this study.