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Comparison of Quantitative Metamorphopsia- Measurements in Patients With mCNV

Comparison of Quantitative Metamorphopsia- Measurements in Patients With mCNV

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04112524
Enrollment
23
Registered
2019-10-02
Start date
2019-10-08
Completion date
2021-02-02
Last updated
2021-12-09

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

Conditions

Metamorphopsia

Brief summary

The myopic CNV (mCNV) is a blood vessel neoplasm starting from the choroid, based on pathological myopia (severe myopia). Choroidal neovascularization secondary to pathological myopia is the most common cause of severe visual impairment in myopic patients younger than 50 years old. Because untreated small fibrovascular membranes cause rapid damage to the photoreceptors, timely treatment is required in view of poor spontaneous prognosis1. Metamorphopsia is the first functional impairment which occurs in mCNV - visual acuity loss and scotoma follow later. There is a need for better and quicker quantifying of the metamorphopsia in mCNV patients. The aim of this study is to detect metamorphopsia and verify correlations of different indexes with disease activity or not, measured in Optical Cohorence Tomography (OCT), best corrected visual acuity (BCVA), Vision related quality of life questionnaire (NEI-VFY-25) and quantify severity of metamophopsia.

Detailed description

The myopic CNV is a neovascularization starting from the choroid and growing into the space between choroid and retina, based on pathological myopia (severe myopia). Choroidal neovascularization secondary to pathological myopia (mCNV) is the most common cause of severe visual impairment in myopic patients younger than 50 years old.1 As untreated subretinal fibrovascular membranes cause rapid damage to the photoreceptors, timely treatment is required in view of poor spontaneous prognosis.1 Metamorphopsia is the first functional impairment which occurs in mCNV - visual acuity loss and scotoma follow later. The Amsler Grid, a qualitative paper test developed the swiss ophthalmologist Marc Amsler (1891 - 1968), is a square-shaped grid used to detect or monitor metamorphopsia or scotoma involving the central visual field in various disorders of the macula and optic nerve head11. Myopic CNV patients use the Amsler Grid as a home monitoring device for qualitative detection of metamorphopsia by checking the grid regularly11. Due to subretinal scarring in mCNV interpretation is often difficult and early changes cannot be detected and quantified. Until now there are no quantitative measurements for mCNV monitoring in clinical use. Recently, two devices to detect and monitor metamorphopsia using smart phones and PCs, respectively, have been developed for use in choroidal neovascularization in age-related macular degeneration.5,6 * Alleye® Test Alleye® Test is a mobile medical software application indicated for the detection and characterization of metamorphopsia. For the mean Alleye score (±standard deviation (SD) deviations of dots from an ideal line are calculated for each eye.5 * AMD-A Metamorphopsia Detector® Is based on the Amsler grid. The software uses the concept of a negative image: a distorted image can be straightened by moving the mouse. Degree and dimension of distorted lines or scotoma are transformed into indices.6 This study was designed to find out whether these metamorphopsia applications are suitable for patients with mCNV and to find out if mCNV patients can benefit for a quicker detecting of the metamorphopsia. Therefore, the aim of this study is to detect metamorphopsia and verify correlations of different indexes with disease activity or not, measured in Optical Cohorence Tomography (OCT), best corrected visual Acuity (BCVA), Vision related quality of life questionnaire (NEI-VFY-25) and quantify severity of metamophopsia.

Interventions

DEVICEApp

* Alleye® Test Alleye® Test is a mobile medical software application indicated for the detection and characterization of metamorphopsia. For the mean Alleye score (±standard deviation (SD) deviations of dots from an ideal line are calculated for each eye. * AMD-A Metamorphopsia Detector® Is based on the Amsler grid. The software uses the concept of a negative image: a distorted image can be straightened by moving the mouse. Degree and dimension of distorted lines or scotoma are transformed into indices.

Sponsors

PD Dr. med. Katja Hatz
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Healthy volunteers
No

Inclusion criteria

* diagnosis of mCNV involving the juxtafoveal or/and foveal region * BCVA \>0.1 (20/200, Snellen) * ability to follow the study procedures * given written consent to participation * \>18 years

Exclusion criteria

* history of vitreoretinal surgery (including membrane peeling and retinal detachment surgery) to the study eye * presence of macula foramen or epiretinal membrane with significant distortion of retinal architecture * history of any side effects to Tropicamide eye drops

Design outcomes

Primary

MeasureTime frameDescription
Metamorphopsia index change from baseline (no mCNV activity) to month 6 and 12 and all visits in between (disease activity dependent) for the following two devices - AMD-A Metamorphopsia Detector® (app4eyes - TEST) - Alleye® Test1 yearMetamorphopsia index change (disease activity)

Secondary

MeasureTime frameDescription
CRT (central retinal thickness) measured in OCT1 yearCRT change (disease activity)
-outer retina disruption score within central 1mm (measured in OCT) -maximum CNV thickness within central 1mm (measured in OCT) -area of pigment epithelium atrophy within central 1mm measured in autofluorescence imaging1 yearChange of outer Retina disruption score and maximum CNV thickness
NEI VFQ-25 questionnaire -BCVA (best corrected visual acuity)1 yearChange in BCVA

Countries

Switzerland

Outcome results

None listed

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