Sadek, NA
ORCID: 0009-0004-4013-0544, Al-Dahan, ZT, Rattan, SA, Hussein, AF, Geraghty, B
ORCID: 0000-0003-0561-6667 and Kazaili, A
ORCID: 0000-0002-0400-7432
(2026)
Advanced CNN Deep Learning Model for Diabetic Retinopathy Classification
Journal of Biomedical Physics and Engineering, 16 (3).
pp. 191-204.
ISSN 2251-7200, 2251-7200
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Advanced CNN Deep Learning Model forDiabetic Retinopathy Classification.pdf - Open Access published version Available under License Creative Commons Attribution Non-commercial. Download (1MB) | Preview |
Abstract
Background: Diabetic Retinopathy (DR) is one of several retinal microvascular complications of Diabetes Mellitus (DM), a disease of increasing global prevalence. However, early detection and treatment can reduce or even prevent DR progression. In this work, Deep Learning (DL) techniques are used to grade DR from an early stage using either binary or multiclass classification as a clinical aid to help reduce the risk of patient vision loss. Objective: The primary objective of this research is to develop a low-cost, fast, and accurate automated system using DL for the early detection and classification of DR from retina fundus images. Material and Methods: This cross-sectional study employed three DL models, namely Convolutional Neural Networks (CNNs), decision tree, and logistic regression, to categorize three distinct clinically graded datasets, namely the Iraqi dataset, the Indian Diabetic Retinopathy Image Dataset (IDRiD) and the Eyepacs dataset, according to DR severity. Results: Evaluation of the DL model results showed that logistic regression emerged as the most effective, where accuracies of 99%, 99.3%, and 99.4% were achieved for the Iraqi, IDRiD, and Eyepacs datasets, respectively. Conversely, the decision-tree model achieved the lowest accuracy across the three datasets with 95.2%, 95.9%, and 96.0%, respectively. Conclusion: The logistic regression model demonstrated the highest overall accuracy of the three models for the classification of DR, with the Iraqi dataset with the highest accuracy of the three datasets.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | CNN, Decision Trees, Deep Learning, Diabetic Retinopathy, EyePACS, IDRiD, Iraqi Dataset, Logistic Regression |
| Divisions: | Faculty of Health & Life Sciences Faculty of Health & Life Sciences > Inst. Life Courses & Medical Sciences |
| Depositing User: | Symplectic Admin |
| Date Deposited: | 16 Jun 2025 08:29 |
| Last Modified: | 22 Jun 2026 03:57 |
| DOI: | 10.31661/jbpe.v0i0.2406-1774 |
| Related Websites: | |
| URI: | https://livrepository.liverpool.ac.uk/id/eprint/3193250 |
| Disclaimer: | The University of Liverpool is not responsible for content contained on other websites from links within repository metadata. Please contact us if you notice anything that appears incorrect or inappropriate. |
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