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  4. From Retinal Pixels to Patients: Evolution of Deep Learning Research in Diabetic Retinopathy Screening
 
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2025
Conference Paper
Title

From Retinal Pixels to Patients: Evolution of Deep Learning Research in Diabetic Retinopathy Screening

Abstract
Diabetic Retinopathy (DR) remains a leading cause of preventable blindness, with early detection critical for reducing vision loss worldwide. Over the past decade, deep learning has transformed DR screening, progressing from early convolutional neural networks trained on private datasets to advanced pipelines addressing class imbalance, label scarcity, domain shift, and interpretability. This survey provides the first systematic synthesis of DR research spanning 2016-2025, consolidating results from 50+ studies and over 20 datasets. We critically examine methodological advances, including self- and semi-supervised learning, domain generalization, federated training, and hybrid neuro-symbolic models, alongside evaluation protocols, reporting standards, and reproducibility challenges. Benchmark tables contextualize performance across datasets, while discussion highlights open gaps in multi-center validation and clinical trust. By linking technical progress with translational barriers, this work outlines a practical agenda for reproducible, privacy-preserving, and clinically deployable DR AI. Beyond DR, many of the surveyed innovations extend broadly to medical imaging at scale.
Author(s)
Chopra, Muskaan
Universität Bonn
Sparrenberg, Lorenz
Universität Bonn
Berger, Armin
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Khanna, Sarthak
Universität Bonn
Terheyden, Jan H.
Universitätsklinikum Bonn
Sifa, Rafet  
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Mainwork
IEEE International Conference on Big Data, BigData 2025  
Conference
International Conference on Big Data 2025  
DOI
10.1109/BigData66926.2025.11402603
Language
English
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Keyword(s)
  • Deep Learning

  • Diabetic Retinopathy

  • Domain Generalization

  • Medical Imaging

  • SelfSupervised Learning

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