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Investigating Determinants and Evaluating Deep Learning Training Approaches for Visual Acuity in Foveal Hypoplasia

Volha V. Malechka, Dat Duong, Keyla D. Bordonada, Amy Turriff, Delphine Blain, Elizabeth Murphy, Wendy J. Introne, Bernadette R. Gochuico, David R. Adams, Wadih M. Zein, Brian P. Brooks, Laryssa A. Huryn, Benjamin D. Solomon, Robert B. Hufnagel

2022Ophthalmology Science13 citationsDOIOpen Access PDF

Abstract

Purpose: To describe the relationships between foveal structure and visual function in a cohort of individuals with foveal hypoplasia (FH) and to estimate FH grade and visual acuity using a deep learning classifier. Design: Retrospective cohort study and experimental study. Participants: A total of 201 patients with FH were evaluated at the National Eye Institute from 2004 to 2018. Methods: Structural components of foveal OCT scans and corresponding clinical data were analyzed to assess their contributions to visual acuity. To automate FH scoring and visual acuity correlations, we evaluated the following 3 inputs for training a neural network predictor: (1) OCT scans, (2) OCT scans and metadata, and (3) real OCT scans and fake OCT scans created from a generative adversarial network. Main Outcome Measures: The relationships between visual acuity outcomes and determinants, such as foveal morphology, nystagmus, and refractive error. Results: < 0.0001). Our neural network predictors reliably estimated the FH grading and visual acuity (correlation to true value > 0.85 and > 0.70, respectively) for a test cohort of 37 individuals (98 OCT scans). Training the predictor on real OCT scans with metadata and fake OCT scans improved the accuracy over the model trained on real OCT scans alone. Conclusions: Nystagmus and foveal anatomy impact visual outcomes in patients with FH, and computational algorithms reliably estimate FH grading and visual acuity.

Topics & Concepts

FovealVisual acuityMedicineNystagmusOphthalmologyCohortHypoplasiaOptometryDioptreAudiologySurgeryRetinalInternal medicinemelanin and skin pigmentationConnexins and lens biologyDermatologic Treatments and Research