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Covariance-driven retinal image registration initialized from small sets of landmark correspondences.

, , , and . ISBI, page 333-336. IEEE, (2002)

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Real-time image processing algorithms for an automated retinal laser surgery system., , , and . ICIP, page 426-429. IEEE Computer Society, (1995)Model-Based Method for Improving the Accuracy and Repeatability of Estimating Vascular Bifurcations and Crossovers From Retinal Fundus Images., , , and . IEEE Trans. Information Technology in Biomedicine, 8 (2): 122-130 (2004)Optimal scheduling of tracing computations for real-time vascular landmark extraction from retinal fundus images., , , , and . IEEE Trans. Information Technology in Biomedicine, 5 (1): 77-91 (2001)Rapid automated tracing and feature extraction from retinal fundus images using direct exploratory algorithms., , , , and . IEEE Trans. Information Technology in Biomedicine, 3 (2): 125-138 (1999)Covariance-driven retinal image registration initialized from small sets of landmark correspondences., , , and . ISBI, page 333-336. IEEE, (2002)Integrated Analysis of Vascular and Nonvascular Changes From Color Retinal Fundus Image Sequences., , , , and . IEEE Trans. Biomed. Eng., 54 (8): 1436-1445 (2007)Frame-Rate Spatial Referencing Based on Invariant Indexing and Alignment with Application to Laser Retinal Surgery., , , , and . CVPR (1), page 79-86. IEEE Computer Society, (2001)A Feature-Based Technique for Joint, Linear Estimation of High-Order Image-to-Mosaic Transformations: Application to Mosaicing the Curved Human Retina., , , and . CVPR, page 2585-2591. IEEE Computer Society, (2000)