Francesco Bandello, Amparo Navea Tejerina, Stela Vujosevic, Monica Varano, Catherine Egan, Sobha Sivaprasad, Geeta Menon, Pascale Massin, Frank D Verbraak, Henrik Lund-Andersen, Jose P Martinez, Ignasi Jürgens, R M Erica Smets, Caroline Coriat, Peter Wiedemann, Victor Ágoas, Giuseppe Querques, Frank G Holz, Sandrina Nunes, Dalila Alves, Catarina Neves, Torcato Santos, Luisa Ribeiro, José Cunha-Vaz
Journal: Ophthalmic research 2016;54(3):112-7
PMID: 26315448
PURPOSE
To identify the retinal layer predominantly affected in eyes with subclinical and clinical macular edema in diabetes type 2.
METHODS
A cohort of 194 type 2 diabetic eyes/patients with mild nonproliferative diabetic retinopathy (ETDRS levels 20/35) were examined with Cirrus spectral-domain optical coherence tomography (OCT) at the baseline visit (ClinicalTrials.gov identifier: NCT01145599). Automated segmentation of the retinal layers of the eyes with subclinical and clinical macular edema was compared with a sample of 31 eyes from diabetic patients with normal OCT and an age-matched control group of 58 healthy eyes.
RESULTS
From the 194 eyes in the study, 62 had subclinical macular edema and 12 had clinical macular edema. The highest increases in retinal thickness (RT) were found in the inner nuclear layer (INL; 33.6% in subclinical macular edema and 81.8% in clinical macular edema). Increases were also found in the neighboring layers. Thinning of the retina was registered in the retinal nerve fiber, ganglion cells and inner plexiform layers in the diabetic eyes without macular edema.
CONCLUSIONS
The increase in RT occurring in diabetic eyes with macular edema is predominantly located in the INL but extends to neighboring retinal layers indicating that it may be due to extracellular fluid accumulation.
© 2015 S. Karger AG, Basel.
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