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Combining Feature Correspondence With Parametric Chamfer Alignment: Hybrid Two-Stage Registration for Ultra-Widefield Retinal Images.

, , , , , and . IEEE Trans. Biomed. Eng., 70 (2): 523-532 (February 2023)

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Weakly-Supervised Vessel Detection in Ultra-Widefield Fundus Photography via Iterative Multi-Modal Registration and Learning., , , , and . IEEE Trans. Medical Imaging, 40 (10): 2748-2758 (2021)Combining Feature Correspondence With Parametric Chamfer Alignment: Hybrid Two-Stage Registration for Ultra-Widefield Retinal Images., , , , , and . IEEE Trans. Biomed. Eng., 70 (2): 523-532 (February 2023)Teleophthalmology for Diabetic Patients: Saving Vision through IT., , and . HICSS, page 4239-4243. IEEE Computer Society, (2014)OCT and OCT Angiography Offer New Insights and Opportunities in Schizophrenia Research and Treatment., , , and . Frontiers Digit. Health, (2022)A Novel Deep Learning Pipeline for Retinal Vessel Detection in Fluorescein Angiography., , , , , and . CoRR, (2019)Retinal Vessel Detection in Wide-Field Fluorescein Angiography with Deep Neural Networks: A Novel Training Data Generation Approach., , , and . ICIP, page 356-360. IEEE, (2018)Neural Networks with Manifold Learning for Diabetic Retinopathy Detection., , , , , and . CoRR, (2016)Color Vision Differences Following Retinal Detachment and Subsequent Cataract Surgery., , and . CIC, page 207-214. Society for Imaging Science and Technology, (2019)FLoRI21: Fluorescein Angiography Longitudinal Retinal Image Registration Dataset., , , , , and . (August 2022)PRIME-FP20: Ultra-Widefield Fundus Photography Vessel Segmentation Dataset., , , , and . (May 2022)