Related Experiment Video
Updated: Jan 20, 2026

Application of Optical Coherence Tomography to a Mouse Model of Retinopathy
Published on: January 12, 2022
Widefield optical coherence tomography angiography in diabetic retinopathy
Rodolfo Mastropasqua1,2, Rossella D'Aloisio3, Luca Di Antonio4
1Vitreoretinal Unit, Bristol Eye Hospital, University of Bristol, Bristol, UK.
Aims:
To evaluate superficial capillary plexus (SCP), deep capillary plexus (DCP) and choriocapillaris (CC) perfusion in macular and near/mid periphery regions in diabetic patients using widefield swept-source optical coherence tomography angiography (WSS-OCTA).
Methods:
Ninety-four diabetic patients (94 eyes) classified as diabetics without diabetic retinopathy (no DR) (25 eyes), mild DR (23 eyes), moderate/severe DR (26 eyes), proliferative DR (20 eyes) and a control group of 25 healthy subjects (25 eyes) were imaged with the WSS-OCTA system (PLEX Elite 9000, Carl Zeiss Meditec Inc., Dublin, CA, USA). Quantitative analysis was performed in the macular and peripheral regions. The main outcome measures were perfusion density (PD) and vessel length density of SCP, DCP and CC.
Results:
Peripheral retina (all sectors) showed lower SCP and DCP PD compared to the macular region (p < 0.001). In diabetics without DR and DR in different stages, SCP and DCP PD significantly decreased at advancing stages of DR (p < 0.001). At DCP level, central PD was significantly directly related to peripheral PD (superior, R = 0.682 and 0.479; temporal, R = 0.918 and 0.554; inferior, R = 0.711). A good sensitivity and an excellent specificity were found in terms of prediction of disease worsening, especially for central and temporal sectors in all plexuses and for all sectors both central and peripheral of DCP.
Conclusions:
The widefield OCTA is useful for the study of central and peripheral retina in diabetic patients with or without diabetic retinopathy, assessing good correlation between central and peripheral retina.
More Related Videos
07:18Evaluation of Capillary and Other Vessel Contribution to Macular Perfusion Density Measured with Optical Coherence Tomography Angiography
Published on: February 18, 2022
07:44In vivo Structural Assessments of Ocular Disease in Rodent Models using Optical Coherence Tomography
Published on: July 24, 2020
Related Concept Videos
08:22Application of Optical Coherence Tomography to a Mouse Model of Retinopathy
07:18Evaluation of Capillary and Other Vessel Contribution to Macular Perfusion Density Measured with Optical Coherence Tomography Angiography
07:44In vivo Structural Assessments of Ocular Disease in Rodent Models using Optical Coherence Tomography
12:22Multimodal Volumetric Retinal Imaging by Oblique Scanning Laser Ophthalmoscopy (oSLO) and Optical Coherence Tomography (OCT)
11:21Integrated Photoacoustic Ophthalmoscopy and Spectral-domain Optical Coherence Tomography
In Vivo Imaging of the Mouse Retina Using Optical Coherence Tomography