Abstract
Abstract
Objectives
This study aimed to develop deep learning models using macular optical coherence tomography (OCT) images to estimate axial lengths (ALs) in eyes without maculopathy.
Methods
A total of 2 664 macular OCT images from 444 patients' eyes without maculopathy, who visited Beijing Hospital between March 2019 and October 2021, were included. The dataset was divided into training, validation, and testing sets with a ratio of 6:2:2. Three pre-trained models (ResNet 18, ResNet 50, and ViT) were developed for binary classification (AL ≥ 26mm) and regression task. Ten-fold cross-validation was performed, and Grad-CAM analysis was employed to visualize AL-related macular features. Additionally, retinal thickness measurements were used to predict AL by linear and logistic regression models.
Results
ResNet 50 achieved an accuracy of 0.872 (95% Confidence Interval [CI], 0.840–0.899), with high sensitivity of 0.804 (95% CI, 0.728–0.867) and specificity of 0.895 (95% CI, 0.861–0.923). The mean absolute error for AL prediction was 0.83 mm (95% CI, 0.72–0.95 mm). The best AUC, and accuracy of AL estimation using macular OCT images (0.929, 87.2%) was superior to using retinal thickness measurements alone (0.747, 77.8%). AL-related macular features were on the fovea and adjacent regions.
Conclusions
OCT images can be effectively utilized for estimating AL with good performance via deep learning. The AL-related macular features exhibit a localized pattern in the macula, rather than continuous alterations throughout the entire region. These findings can lay the foundation for future research in the pathogenesis of AL-related maculopathy.
Publisher
Research Square Platform LLC
Reference24 articles.
1. Refractive error, axial length and anterior chamber depth of the eye in British adults: the EPIC-Norfolk Eye Study;Foster PJ;Br J Ophthalmol,2010
2. Distribution and Severity of Myopic Maculopathy Among Highly Myopic Eyes;Xiao O;Investigative ophthalmology & visual science,2018
3. Histology, clinical features, and potential implications for the etiology of axial elongation;Jonas JB;Prog Retin Eye Res,2022
4. Myopic maculopathy: Current status and proposal for a new classification and grading system (ATN);Ruiz-Medrano J;Prog Retin Eye Res,2019
5. Relationship of gender, body mass index, and axial length with central retinal thickness using optical coherence tomography;Wong AC;Eye (Lond),2005