Paper
10 December 2021 A deep learning model for classification of diabetic retinopathy in eye fundus images based on retinal lesion detection
Author Affiliations +
Proceedings Volume 12088, 17th International Symposium on Medical Information Processing and Analysis; 120880T (2021) https://doi.org/10.1117/12.2606319
Event: Seventeenth International Symposium on Medical Information Processing and Analysis, 2021, Campinas, Brazil
Abstract
Diabetic retinopathy (DR) is the result of a complication of diabetes affecting the retina. It can cause blindness, if left undiagnosed and untreated. An ophthalmologist performs the diagnosis by screening each patient and analyzing the retinal lesions via ocular imaging. In practice, such analysis is time-consuming and cumbersome to perform. This paper presents a model for automatic DR classification on eye fundus images. The approach identifies the main ocular lesions related to DR and subsequently diagnoses the illness. The proposed method follows the same workflow as the clinicians, providing information that can be interpreted clinically to support the prediction. A subset of the kaggle EyePACS and the Messidor-2 datasets, labeled with ocular lesions, is made publicly available. The kaggle EyePACS subset is used as training set and the Messidor-2 as a test set for lesions and DR classification models. For DR diagnosis, our model has an area-under-the-curve, sensitivity, and specificity of 0.948, 0.886, and 0.875, respectively, which competes with state-of-the-art approaches.
© (2021) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Melissa delaPava, Hernan Rios, Francisco J. Rodríguez, Oscar J. Perdomo, and Fabio A. González "A deep learning model for classification of diabetic retinopathy in eye fundus images based on retinal lesion detection", Proc. SPIE 12088, 17th International Symposium on Medical Information Processing and Analysis, 120880T (10 December 2021); https://doi.org/10.1117/12.2606319
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KEYWORDS
Eye models

Image classification

Diagnostics

Convolutional neural networks

Machine learning

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