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NURBS with extraordinary points: high-degree, non-uniform, rational subdivision schemes.

, , , and . ACM Trans. Graph., 28 (3): 46 (2009)

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A smoothness criterion for monotonicity-preserving subdivision., , , and . Adv. Comput. Math., 39 (1): 193-204 (2013)Numerical Checking of C1 for Arbitrary Degree Quadrilateral Subdivision Schemes., , , and . IMA Conference on the Mathematics of Surfaces, volume 5654 of Lecture Notes in Computer Science, page 45-54. Springer, (2009)Deriving Box-Spline Subdivision Schemes., , , and . IMA Conference on the Mathematics of Surfaces, volume 5654 of Lecture Notes in Computer Science, page 106-123. Springer, (2009)NURBS with extraordinary points: high-degree, non-uniform, rational subdivision schemes., , , and . ACM Trans. Graph., 28 (3): 46 (2009)Fake it till you make it: face analysis in the wild using synthetic data alone., , , , , and . ICCV, page 3661-3671. IEEE, (2021)QRkit: Sparse, Composable QR Decompositions for Efficient and Stable Solutions to Problems in Computer Vision., , and . WACV, page 1263-1272. IEEE Computer Society, (2018)A symmetric, non-uniform, refine and smooth subdivision algorithm for general degree B-splines., , and . Comput. Aided Geom. Des., 26 (1): 94-104 (2009)Beyond Catmull-Clark? A Survey of Advances in Subdivision Surface Methods.. Comput. Graph. Forum, 31 (1): 42-61 (2012)HoloLens 2 Research Mode as a Tool for Computer Vision Research., , , , , , , , , and 2 other author(s). CoRR, (2020)What Shape Are Dolphins? Building 3D Morphable Models from 2D Images., and . IEEE Trans. Pattern Anal. Mach. Intell., 35 (1): 232-244 (2013)