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Retinal Neurovascular Coupling in Patients Previously Infected With COVID-19

Retinal Neurovascular Coupling in Patients Previously Infected With COVID-19

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05650905
Enrollment
90
Registered
2022-12-14
Start date
2021-07-26
Completion date
2025-12-31
Last updated
2025-05-16

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

Conditions

COVID-19, Post-COVID-19 Syndrome

Brief summary

The Study objective is to measure retinal neurovascular coupling and blood flow parameters in patients previously infected with COVID-19, long COVID-19 and healthy age- and sex- matched control subjects

Detailed description

The coronavirus disease 2019 (COVID-19) caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is affecting almost all countries in the world and because of its worldwide spread has been declared as pandemic in March 2020. While respiratory symptoms are the main manifestation of acute infection, there is also increasing evidence that neurological and vascular symptoms occur, and it is unknown whether residuals remain after patients have recovered. A recent report shows that changes in the human retina are even present one month after onset of symptoms. The eye, as an extension of the brain, offers the advantage that blood vessels as well as neural tissue can be visualized non-invasively in-vivo. Neurovascular coupling is the ability of neural tissue to adapt its blood flow to its metabolic demands, a phenomenon that does not only occur in the brain, but also in the retina. In the retina, neurovascular coupling can be studied by stimulating the retina with flicker light and measuring the response of the vessels. Retinal neurovascular coupling has been found to be impaired in diseases of the central nervous system (CNS) as well as in diseases associated with endothelial dysfunction. Since COVID-19 comes with CNS manifestations as well as endothelial dysfunction, we speculate that retinal neurovascular coupling might be impaired in patients even after they have recovered from COVID-19 infection. In the current study, retinal neurovascular coupling will be measured in patients who have recovered from COVID-19 infection with and without long COVID-19 and in healthy age- and sex-matched controls with no history of COVID-19 infection. In addition, retinal oxygen saturation, vessel diameters, vessel density as well as retinal and optic nerve head blood flow will be measured. To assess structural changes, measurement of central retinal thickness as well as retinal nerve fiber layer thickness will be performed.

Interventions

Retinal neurovascular coupling, Retinal vessel diameters and Retinal oxygen saturation will be assessed using the DVA

DEVICEFourier domain optical coherence tomography (FDOCT)

Retinal blood velocities and Retinal blood flow will be assessed using the FDOCT

DEVICEOptical coherence tomography (OCT)

Retinal nerve fiber layer thickness, Central retinal thickness and Retinal vessel density will be assessed using the OCT

Normalized blur and Relative flow volume will be assessed using the LSFG

DIAGNOSTIC_TESTProteomics and Metabolites in Plasma, tear fluid and finger sweat

Proteomics and Metabolites in Plasma, tear fluid and finger sweat will be assessed using a Blooddraw, filter paper and Schirmer-test

Sponsors

Medical University of Vienna
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

Inclusion criteria for healthy subjects * Men and women aged over 18 years * Non-smokers * Normal findings in the medical history unless the investigator considers an abnormality to be clinically irrelevant * No previous history of COVID-19 infection * Negative testing for SARS-CoV-2 seroprevalence using nucleocapsid antibody tests * Negative PCR test for SARS-CoV-2 * Normal ophthalmic findings, ametropy \< 6 Dpt. Inclusion criteria for subjects with history of COVID-19 infection * Men and women aged over 18 years * Non-smokers * History of COVID-19 infection (confirmed by a positive PCR test for SARS-CoV2 in the medical history) within the last 6 months * Positive testing for SARS-CoV-2 seroprevalence using spike protein IgG antibody tests * Negative PCR test for SARS-CoV-2 Inclusion criteria for subjects with long COVID-19 * Men and women aged over 18 years * Non-smokers * History of COVID-19 infection (confirmed by a positive PCR test for SARS-CoV2 in the medical history) * Positive testing for SARS-CoV-2 seroprevalence * Negative PCR test for SARS-CoV-2 * Long Covid according to the latest WHO-Guidelines

Exclusion criteria

Any of the following will exclude a healthy control subject from the study: * Symptoms of a clinically relevant illness in the 3 weeks before the first study day * Presence or history of a severe medical condition as judged by the clinical investigator * Participation in a clinical trial in the 3 weeks preceding the study * Blood donation during the previous three weeks * History or family history of epilepsy * Presence of any abnormalities preventing reliable measurements in the study eye as judged by the investigator * Best corrected visual acuity \< 0.8 Snellen * Pregnancy, planned pregnancy or lactatin * History of epilepsia Any of the following will exclude a subject with history of COVID-19 infection from the study: * Blood donation during the previous three weeks * History or family history of epilepsy * Presence of any abnormalities preventing reliable measurements in the study eye as judged by the investigator * Best corrected visual acuity \< 0.8 Snellen * Ametropy \>6 Dpt * Pregnancy, planned pregnancy or lactating * History of epilepsia Any of the following will exclude a subject with long COVID-19 from the study: * Blood donation during the previous three weeks * History or family history of epilepsy * Presence of any abnormalities preventing reliable measurements in the study eye as judged by the investigator * Best corrected visual acuity \< 0.8 Snellen * Ametropy \>6 Dpt * Pregnancy, planned pregnancy or lactating * History of epilepsia * Diabetes mellitus

Design outcomes

Primary

MeasureTime frameDescription
Retinal neurovascular couplingDay 0Retinal neurovascular coupling will be assessed using the DVA

Secondary

MeasureTime frameDescription
Retinal oxygen saturationDay 0Retinal oxygen saturation will be assessed using the DVA
Retinal blood velocitiesDay 0Retinal blood velocities will be assessed using FDOCT
Retinal blood flowDay 0Retinal blood flow will be assessed using FDOCT
Ocular perfusion pressureDay 0Ocular perfusion pressure is going to be calulated
Retinal nerve fiber layer thicknessDay 0Retinal nerve fiber layer thickness will be assessed using OCT
Central retinal thicknessDay 0Central retinal thickness will be assessed using OCT
Retinal vessel diametersDay 0Retinal vessel diameters will be assessed using the DVA
Normalized blurDay 0Normalized blur will be assessed using LSFG
Relative flow volumeDay 0Relative flow volume will be assessed using LSFG
Proteomics and Metabolites in PlasmaDay -14 to -1Proteomics and Metabolites in Plasma will be assessed through a Blood Sample
Proteomics and Metabolites in tear fluidDay 0Proteomics and Metabolites in tear fluid will be assessed using Schirmer
Proteomics and Metabolites in finger sweatDay 0Proteomics and Metabolites in finger sweat will be assessed using finger sweat filters
Retinal vessel densityDay 0Retinal vessel density will be assessed using OCT

Countries

Austria

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 8, 2026