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Clinical Validation of AI-Based Quantitative Eye Movement Analysis From Smartphone 9-Gaze Videos (Glandy EOM) (GLANDY-EOM-VAL)

28. maj 2026 opdateret af: THYROSCOPE INC.

Prospective Multicenter Observational Study for Clinical Validation of AI-Based Quantitative Eye Movement Analysis Using Smartphone-Recorded 9-Gaze Videos

This prospective, multicenter, multinational observational study evaluates the clinical validity of an AI-based quantitative eye movement analysis system (Glandy EOM) that analyzes smartphone-recorded 9-gaze videos. Approximately 200 adults per site with suspected or confirmed ocular motility abnormalities will undergo a single study visit consisting of a standard clinical 9-gaze examination, an assistant-aided smartphone video recording, and a patient self-recorded video acquisition using a mobile application. Because the study population is defined by clinical suspicion or diagnosis of ocular motility abnormality rather than confirmed disease at enrollment, some participants may be clinically judged to have no abnormality on formal evaluation; such subjects remain part of the study population and are not considered healthy volunteers. AI-derived quantitative eye movement metrics (corneal center displacement in millimeters and angular deviation) will be compared with rater-derived measurements obtained from the same videos using a calibrated reference approach, and with clinician-assessed 9-gaze grading. The investigational device is used solely for video acquisition and analysis and does not influence clinical decision-making.

Studieoversigt

Detaljeret beskrivelse

Ocular motility is commonly evaluated using the 9-gaze examination, which relies on clinician observation and semi-quantitative grading. This approach is inherently subjective and can show inter-observer variability and limited sensitivity to subtle changes over time. Objective, quantitative assessment of eye movement remains an unmet clinical need, particularly for monitoring disease progression and treatment response.

Recent advances in artificial intelligence have enabled automated analysis of facial and ocular features from smartphone-recorded videos, offering the potential for reproducible quantitative measurement of eye movement. Glandy EOM is an investigational software-only medical device (SaMD) developed by THYROSCOPE INC. that processes smartphone-recorded 9-gaze videos to generate quantitative eye movement metrics. Glandy EOM has not yet received regulatory approval and is used for research purposes only in this study.

The study is a prospective, multicenter, multinational observational investigation designed to evaluate the clinical validity of Glandy EOM. The study population consists of adults with suspected or confirmed ocular motility abnormalities; healthy volunteers without any clinical indication for 9-gaze examination are not enrolled. Because eligibility is based on clinical suspicion or diagnosis of ocular motility abnormality rather than confirmed disease at enrollment, some participants may ultimately be clinically judged to have no abnormality on formal evaluation; such subjects remain part of the study population. Participants will undergo a single study visit consisting of (1) a standard clinical 9-gaze examination with clinician grading (-4 to +4), (2) a smartphone video recording performed with the assistance of a trained operator using a standardized setup, and (3) a patient self-recorded smartphone video acquired through the study mobile application.

For quantitative reference measurements, independent rater-derived measurements will be obtained from the recorded videos using a calibrated reference approach. A calibration marker of known size will be placed on the glabella during video acquisition to enable real-world scale estimation for the reference measurements. The calibration marker is used only for rater-based reference measurement and is not used by the AI algorithm.

The primary objective is to evaluate agreement between AI-derived quantitative eye movement metrics and rater-derived measurements of corneal center displacement, expressed as distance (mm) and angular deviation. Secondary objectives are to evaluate correlation between AI-derived metrics and clinician-assessed 9-gaze grading, and to evaluate whether AI-derived metrics obtained from patient self-recorded videos are comparable to those obtained from assistant-aided recordings. The investigational device is used solely for video acquisition and analysis and does not influence clinical decision-making during the study.

Undersøgelsestype

Observationel

Tilmelding (Anslået)

1000

Kontakter og lokationer

Dette afsnit indeholder kontaktoplysninger for dem, der udfører undersøgelsen, og oplysninger om, hvor denne undersøgelse udføres.

Studiekontakt

Studiesteder

Deltagelseskriterier

Forskere leder efter personer, der passer til en bestemt beskrivelse, kaldet berettigelseskriterier. Nogle eksempler på disse kriterier er en persons generelle helbredstilstand eller tidligere behandlinger.

Berettigelseskriterier

Aldre berettiget til at studere

  • Voksen
  • Ældre voksen

Tager imod sunde frivillige

Ingen

Prøveudtagningsmetode

Ikke-sandsynlighedsprøve

Studiebefolkning

Adults of legal age of consent with suspected or confirmed ocular motility abnormalities, recruited at participating ophthalmology sites.

Some enrolled participants may ultimately be clinically judged to have no abnormality on formal evaluation; these subjects remain part of the study population and are not considered healthy volunteers.

Beskrivelse

Inclusion Criteria:

  • Adults who have reached the legal age of consent for research participation in the applicable jurisdiction.
  • Subjects with suspected or known ocular motility abnormalities.
  • Subjects who are able to understand and follow gaze instructions required for the 9-gaze examination, as judged by the investigator.
  • Subjects who are able to undergo facial video recording using a smartphone.
  • Subjects who provide written informed consent.

Exclusion Criteria:

  • Conditions that prevent reliable detection of ocular landmarks in video recordings (e.g., severe ptosis, corneal opacity, or significant occlusion of the eyes).
  • Ocular or facial conditions that, in the opinion of the investigator, may significantly interfere with image-based analysis.
  • Subjects who are unable to comply with study procedures.

Studieplan

Dette afsnit indeholder detaljer om studieplanen, herunder hvordan undersøgelsen er designet, og hvad undersøgelsen måler.

Hvordan er undersøgelsen tilrettelagt?

Design detaljer

Kohorter og interventioner

Gruppe / kohorte
Intervention / Behandling
Ocular motility abnormality cohort (single cohort)
Adults with suspected or confirmed ocular motility abnormalities scheduled for clinical 9-gaze examination at participating ophthalmology sites. No separate healthy-volunteer control cohort is enrolled; some participants may ultimately be clinically judged to have no abnormality on formal evaluation but remain part of the study population.

Glandy EOM is an investigational software-only medical device developed by THYROSCOPE INC. It has not yet received regulatory approval and is used for research purposes only in this study. Glandy EOM processes smartphone-recorded 9-gaze facial videos to generate AI-derived quantitative eye movement metrics:

  • Corneal center displacement (mm)
  • Angular deviation (degrees) Video acquisition in this study includes (a) an assistant-aided recording using a standardized smartphone setup in the clinical environment and (b) a patient self-recorded video acquired through the study mobile application. A calibration marker of known size placed on the glabella is used for rater-derived reference measurements only and is NOT used by the AI algorithm.

AI outputs are generated for research analysis and are NOT used to guide real-time clinical decisions during the study.

Hvad måler undersøgelsen?

Primære resultatmål

Resultatmål
Foranstaltningsbeskrivelse
Tidsramme
Agreement between AI-derived and rater-derived corneal center displacement (distance, mm)
Tidsramme: At study visit (single visit)
Agreement between AI-derived and rater-derived measurements of corneal center displacement expressed as distance (mm) across 9 gaze positions, assessed by intraclass correlation coefficient (ICC) and Bland-Altman analysis.
At study visit (single visit)
Agreement between AI-derived and rater-derived angular deviation (degrees)
Tidsramme: At study visit (single visit)
Agreement between AI-derived and rater-derived measurements of corneal center displacement expressed as angular deviation (degrees) across 9 gaze positions, assessed by ICC and Bland-Altman analysis.
At study visit (single visit)
Linear association and absolute error vs. rater-derived reference
Tidsramme: At study visit (single visit)
Linear association and absolute error between AI-derived and rater-derived measurements (both distance and angular deviation), assessed by Pearson correlation coefficient and mean absolute error (MAE), respectively.
At study visit (single visit)

Sekundære resultatmål

Resultatmål
Foranstaltningsbeskrivelse
Tidsramme
Correlation between AI-derived metrics (assistant-aided recording) and clinician-assessed 9-gaze grading
Tidsramme: At study visit (single visit)
Correlation between AI-derived eye movement metrics obtained from assistant-aided smartphone recordings and clinician-assessed 9-gaze grading (-4 to +4), assessed using Spearman correlation.
At study visit (single visit)
Correlation between AI-derived metrics (patient self-recorded) and clinician-assessed 9-gaze grading
Tidsramme: At study visit (single visit)
Correlation between AI-derived eye movement metrics obtained from patient self-recorded smartphone videos and clinician-assessed 9-gaze grading (-4 to +4), assessed using Spearman correlation.
At study visit (single visit)
Agreement between AI-derived metrics from patient self-recorded vs. assistant-aided recordings
Tidsramme: At study visit (single visit)
Agreement between AI-derived metrics obtained from patient self-recorded and assistant-aided smartphone videos, assessed using ICC and Bland-Altman analysis.
At study visit (single visit)
Linear association and absolute error: patient self-recorded vs. assistant-aided
Tidsramme: At study visit (single visit)
Linear association and absolute error between AI-derived metrics from patient self-recorded and assistant-aided smartphone videos, assessed using Pearson correlation coefficient and mean absolute error (MAE).
At study visit (single visit)

Samarbejdspartnere og efterforskere

Det er her, du vil finde personer og organisationer, der er involveret i denne undersøgelse.

Sponsor

Datoer for undersøgelser

Disse datoer sporer fremskridtene for indsendelser af undersøgelsesrekord og resumeresultater til ClinicalTrials.gov. Studieregistreringer og rapporterede resultater gennemgås af National Library of Medicine (NLM) for at sikre, at de opfylder specifikke kvalitetskontrolstandarder, før de offentliggøres på den offentlige hjemmeside.

Studer store datoer

Studiestart (Anslået)

1. juli 2026

Primær færdiggørelse (Anslået)

30. juni 2027

Studieafslutning (Anslået)

31. december 2027

Datoer for studieregistrering

Først indsendt

18. april 2026

Først indsendt, der opfyldte QC-kriterier

28. maj 2026

Først opslået (Faktiske)

3. juni 2026

Opdateringer af undersøgelsesjournaler

Sidste opdatering sendt (Faktiske)

3. juni 2026

Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier

28. maj 2026

Sidst verificeret

1. april 2026

Mere information

Begreber relateret til denne undersøgelse

Plan for individuelle deltagerdata (IPD)

Planlægger du at dele individuelle deltagerdata (IPD)?

INGEN

IPD-planbeskrivelse

The dataset includes patient-captured smartphone 9-gaze facial videos, which are inherently identifiable biometric data and carry a higher re-identification risk than static images. Public sharing of individual participant data (IPD) would therefore pose a substantial privacy risk that cannot be fully mitigated by standard de-identification of tabular variables alone. The informed consent obtained from participants and the IRB/EC-approved protocol do not authorize broad third-party sharing of these video recordings or associated individual-level records. As this is a multinational, multicenter study, the collected data are also subject to the personal data protection laws applicable in each participating jurisdiction, including the Republic of Korea's Personal Information Protection Act (PIPA), the EU General Data Protection Regulation (GDPR), and the US HIPAA where applicable, which restrict external transfer of identifiable health and biometric information. In addition, the investiga

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