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Corneal Endothelial Cell Segmentation by Classifier-Driven Merging of Oversegmented Images., , , , , , и . IEEE Trans. Med. Imaging, 37 (10): 2278-2289 (2018)AIROGS: Artificial Intelligence for Robust Glaucoma Screening Challenge., , , , , , , , , и 26 other автор(ы). IEEE Trans. Medical Imaging, 43 (1): 542-557 (января 2024)Automatic estimation of retinal nerve fiber bundle orientation in SD-OCT images using a structure-oriented smoothing filter., , , , и . Medical Imaging: Image Processing, том 10133 из SPIE Proceedings, стр. 101330C. SPIE, (2017)AIROGS: Artificial Intelligence for RObust Glaucoma Screening Challenge., , , , , , , , , и 26 other автор(ы). CoRR, (2023)Joint Segmentation of Retinal Layers and Focal Lesions in 3-D OCT Data of Topologically Disrupted Retinas., , , , и . IEEE Trans. Med. Imaging, 36 (6): 1276-1286 (2017)DenseUNets with feedback non-local attention for the segmentation of specular microscopy images of the corneal endothelium with guttae., , , , , , и . CoRR, (2022)Convolutional neural network-based regression for biomarker estimation in corneal endothelium microscopy images., , , , и . EMBC, стр. 876-881. IEEE, (2019)Evaluation of an AI system for the automated detection of glaucoma from stereoscopic optic disc photographs: the European Optic Disc Assessment Study., , , , , , и . CoRR, (2019)Noise-adaptive attenuation coefficient estimation in spectral domain optical coherence tomography data., , , , и . ISBI, стр. 706-709. IEEE, (2016)An Automated System for the Detection and Classification of Retinal Changes Due to Red Lesions in Longitudinal Fundus Images., , , , , и . IEEE Trans. Biomed. Eng., 65 (6): 1382-1390 (2018)