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Ultra-widefield fundus image (UFI) has become a crucial tool for ophthalmologists in diagnosing ocular diseases because of its ability to capture a wide field of the retina. Nevertheless, detecting and classifying multiple diseases within this imaging modality continues to pose a significant challenge for ophthalmologists. An automated disease classification system for UFI can support ophthalmologists in making faster and more precise diagnoses. However, existing works for UFI classification often focus on a single disease or assume each image only contains one disease when tackling multi-disease issues. Furthermore, the distinctive characteristics of each disease are typically not utilized to improve the performance of the classification systems. To address these limitations, we propose a novel approach that leverages disease-specific regions of interest for the multi-label classification of UFI. Our method uses three regions, including the optic disc area, the macula area, and the entire UFI, which serve as the most informative regions for diagnosing one or multiple ocular diseases. Experimental results on a dataset comprising 5930 UFIs with six common ocular diseases showcase that our proposed approach attains exceptional performance, with the area under the receiver operating characteristic curve scores for each class spanning from 95.07% to 99.14%. These results not only surpass existing state-of-the-art methods but also exhibit significant enhancements, with improvements of up to 5.29%. These results demonstrate the potential of our method to provide ophthalmologists with valuable information for early and accurate diagnosis of ocular diseases, ultimately leading to improved patient outcomes.
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http://dx.doi.org/10.3390/bioengineering10091048 | DOI Listing |
J Imaging Inform Med
September 2025
Department of Radiology, University of Cincinnati, Cincinnati, OH, USA.
Background: Ocular imaging is essential to the diagnosis and management of eye disease, yet standardized imaging workflows remain underdeveloped in the eye care setting. This manuscript describes the design and implementation of an orders-based imaging workflow for ambulatory ophthalmology integrated with the electronic health record and enterprise imaging systems.
Methods: We developed a DICOM-compliant workflow for pediatric ophthalmology imaging that supports HL7 integration, DICOM modality worklists, and enterprise archive storage.
J Neurol
September 2025
Department of Neurology, Xuanwu Hospital, National Center for Neurological Disorders, Capital Medical University, Beijing, China.
Background And Purpose: Efgartigimod has demonstrated efficacy in generalized myasthenia gravis (gMG) in both clinical trials and real-world studies. However, factors influencing early response have been less reported. This study aimed to evaluate the efficacy of efgartigimod in a multicenter gMG cohort and to identify the clinical factors associated with early therapeutic response.
View Article and Find Full Text PDFEye (Lond)
September 2025
Faculty of Medical and Health Sciences, Tel Aviv University, Tel Aviv, Israel.
Objectives: To characterise the chorioretinal (CR) manifestations of West Nile virus (WNV) infection using multimodal imaging (MMI).
Methods: Retrospective cohort study including 37 patients with confirmed WNV infection hospitalised at a single centre (July-September 2024). All underwent comprehensive ophthalmological evaluations, including visual acuity, slit-lamp biomicroscopy, fundoscopy, and multimodal imaging: fundus photography, spectral-domain optical coherence tomography (SD-OCT), fundus autofluorescence (FAF), fluorescein angiography, and indocyanine green angiography when clinically indicated.
Zhonghua Yan Ke Za Zhi
September 2025
Department of Respiratory, The First People's Hospital of Xianyang, Xianyang 712000, China.
A 65-year-old male patient presented with "blurred vision in the right eye for 1 week". At the first visit, the best corrected visual acuity (BCVA) of both eyes was 0.8, no obvious abnormalities were observed in fundus examination, and optical coherence tomography (OCT) revealed the loss of outer retinal layers adjacent to the macula in the right eye.
View Article and Find Full Text PDFZhonghua Yan Ke Za Zhi
September 2025
Ophthalmology Medical Center, The First Affiliated Hospital of Chongqing Medical University, Chongqing Key Laboratory for the Prevention and Treatment of Major Blinding Eye Diseases, Chongqing Branch (Municipality Division) of National Clinical Research Centre for Ocular Diseases, Chongqing 400016,
To explore optimized protocols for paraffin section preparation of the eyeball to enhance the histological visualization of key ocular structures. It was an experimental research, conducted from September 2022 to September 2024. The first experiment involved 18 porcine eyeballs, which were divided into five groups (six subgroups) by the random number table method.
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