Related Experiment Video
Updated: Jan 19, 2026

Optical Coherence Tomography Imaging for Assessing Uveitis in a Mouse Model
Optical coherence tomography diagnostic signs in posterior uveitis
Francesco Pichi1, Alessandro Invernizzi2, William R Tucker3
1Eye Institute, Cleveland Clinic Abu Dhabi, Abu Dhabi, United Arab Emirates; Cleveland Clinic Lerner College of Medicine, Case Western Reserve University, Cleveland, OH, USA.
Abstract:
A diagnostic sign refers to a quantifiable biological parameter that is measured and evaluated as an indicator of normal biological, pathogenic, or pharmacologic responses to a therapeutic intervention. When used in translational research discussions, the term itself often alludes to a sign used to accelerate or aid in diagnosis or monitoring and provide insight into "personalized" medicine. Many new diagnostic signs are being developed that involve imaging technology. Optical coherence tomography is an imaging technique that provides in vivo quasi-histological images of the ocular tissues and as such it's able to capture the structural and functional modifications that accompany inflammation and infection of the posterior part of the eye. From the hyperreflective inflammatory cells and deposits in the vitreous and on the hyaloid, to the swollen photoreceptors bodies in multiple evanescent white dots syndrome, and from optical differences in the subretinal fluid compartments in Vogt-Koyanagi-Harada disease to the hyporeflective granulomas in the choroid, these tomographical signs can be validated to reach the status of biomarkers. Such non-invasive imaging diagnostic signs of inflammation can be very useful to clinicians seeking to make a diagnosis and can represent a dataset for machine learning to offer a more empirical approach to the detection of posterior uveitis.
Related Concept Videos
03:12Optical Coherence Tomography Imaging for Assessing Uveitis in a Mouse Model
In Vivo Imaging of the Mouse Retina Using Optical Coherence Tomography
08:22Application of Optical Coherence Tomography to a Mouse Model of Retinopathy
11:21Integrated Photoacoustic Ophthalmoscopy and Spectral-domain Optical Coherence Tomography
10:33Primed Mycobacterial Uveitis (PMU) as a Model for Post-Infectious Uveitis
06:15Anterior High-Resolution Optical Coherence Tomography in the Diagnosis and Therapeutic Monitoring of Ocular Surface Squamous Neoplasia
