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Thomas J. Cashman 0001
Person information
- affiliation: Microsoft Research, Cambridge, UK
- affiliation (former): University of Lugano, Switzerland
- affiliation (PhD 2010): University of Cambridge, UK
Other persons with the same name
- Thomas J. Cashman 0002 — Long Beach City College, Long Beach, California
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2020 – today
- 2024
- [c14]Thomas Joseph Cashman, Tim Hutton, Martin de La Gorce, Tibor Takács, Antonio Criminisi, Milica Dordevic, Goran Dubajic, Dorde Marjanovic, Milena Okosanovic, Vukasin Rankovic, Ivan Razumenic, Bojan Rosko, Teo Sarkic, Marko Skakun, Milos Stojanovic, Nikola Velickovic, Predrag Jovanovic, Payod Panda, Lev Tankelevitch, Sean Rintel:
An Equal Seat at the Table: Exploring Videoconferencing with Shared Spatial Context combined with 3D Video Representations. CHI Extended Abstracts 2024: 41:1-41:9 - 2022
- [c13]Sadegh Aliakbarian, Pashmina Cameron, Federica Bogo, Andrew W. Fitzgibbon, Thomas J. Cashman:
FLAG: Flow-based 3D Avatar Generation from Sparse Observations. CVPR 2022: 13243-13252 - [c12]Erroll Wood, Tadas Baltrusaitis, Charlie Hewitt, Matthew Johnson, Jingjing Shen, Nikola Milosavljevic, Daniel Wilde, Stephan J. Garbin, Toby Sharp, Ivan Stojiljkovic, Tom Cashman, Julien P. C. Valentin:
3D Face Reconstruction with Dense Landmarks. ECCV (13) 2022: 160-177 - [i7]Sadegh Aliakbarian, Pashmina Cameron, Federica Bogo, Andrew W. Fitzgibbon, Thomas J. Cashman:
FLAG: Flow-based 3D Avatar Generation from Sparse Observations. CoRR abs/2203.05789 (2022) - [i6]Erroll Wood, Tadas Baltrusaitis, Charlie Hewitt, Matthew Johnson, Jingjing Shen, Nikola Milosavljevic, Daniel Wilde, Stephan J. Garbin, Toby Sharp, Ivan Stojiljkovic, Tom Cashman, Julien Valentin:
3D face reconstruction with dense landmarks. CoRR abs/2204.02776 (2022) - 2021
- [c11]Erroll Wood, Tadas Baltrusaitis, Charlie Hewitt, Sebastian Dziadzio, Thomas J. Cashman, Jamie Shotton:
Fake it till you make it: face analysis in the wild using synthetic data alone. ICCV 2021: 3661-3671 - [c10]Andrea Dittadi, Sebastian Dziadzio, Darren Cosker, Ben Lundell, Thomas J. Cashman, Jamie Shotton:
Full-Body Motion from a Single Head-Mounted Device: Generating SMPL Poses from Partial Observations. ICCV 2021: 11667-11677 - [i5]Erroll Wood, Tadas Baltrusaitis, Charlie Hewitt, Sebastian Dziadzio, Matthew Johnson, Virginia Estellers, Thomas J. Cashman, Jamie Shotton:
Fake It Till You Make It: Face analysis in the wild using synthetic data alone. CoRR abs/2109.15102 (2021) - 2020
- [c9]Jingjing Shen, Thomas J. Cashman, Qi Ye, Tim Hutton, Toby Sharp, Federica Bogo, Andrew W. Fitzgibbon, Jamie Shotton:
The Phong Surface: Efficient 3D Model Fitting Using Lifted Optimization. ECCV (1) 2020: 687-703 - [i4]Jingjing Shen, Thomas J. Cashman, Qi Ye, Tim Hutton, Toby Sharp, Federica Bogo, Andrew William Fitzgibbon, Jamie Shotton:
The Phong Surface: Efficient 3D Model Fitting using Lifted Optimization. CoRR abs/2007.04940 (2020) - [i3]Tadas Baltrusaitis, Erroll Wood, Virginia Estellers, Charlie Hewitt, Sebastian Dziadzio, Marek Kowalski, Matthew Johnson, Thomas J. Cashman, Jamie Shotton:
A high fidelity synthetic face framework for computer vision. CoRR abs/2007.08364 (2020) - [i2]Dorin Ungureanu, Federica Bogo, Silvano Galliani, Pooja Sama, Xin Duan, Casey Meekhof, Jan Stühmer, Thomas J. Cashman, Bugra Tekin, Johannes L. Schönberger, Pawel Olszta, Marc Pollefeys:
HoloLens 2 Research Mode as a Tool for Computer Vision Research. CoRR abs/2008.11239 (2020)
2010 – 2019
- 2018
- [c8]Jan Svoboda, Thomas J. Cashman, Andrew W. Fitzgibbon:
QRkit: Sparse, Composable QR Decompositions for Efficient and Stable Solutions to Problems in Computer Vision. WACV 2018: 1263-1272 - [i1]Jan Svoboda, Thomas J. Cashman, Andrew W. Fitzgibbon:
QRkit: Sparse, Composable QR Decompositions for Efficient and Stable Solutions to Problems in Computer Vision. CoRR abs/1802.03773 (2018) - 2017
- [c7]Mariano Jaimez, Thomas J. Cashman, Andrew W. Fitzgibbon, Javier González Jiménez, Daniel Cremers:
An Efficient Background Term for 3D Reconstruction and Tracking with Smooth Surface Models. CVPR 2017: 2575-2583 - 2016
- [j11]Jonathan Taylor, Lucas Bordeaux, Thomas J. Cashman, Bob Corish, Cem Keskin, Toby Sharp, Eduardo Soto, David Sweeney, Julien P. C. Valentin, Benjamin Luff, Arran Topalian, Erroll Wood, Sameh Khamis, Pushmeet Kohli, Shahram Izadi, Richard Banks, Andrew W. Fitzgibbon, Jamie Shotton:
Efficient and precise interactive hand tracking through joint, continuous optimization of pose and correspondences. ACM Trans. Graph. 35(4): 143:1-143:12 (2016) - [c6]David Joseph Tan, Thomas J. Cashman, Jonathan Taylor, Andrew W. Fitzgibbon, Daniel Tarlow, Sameh Khamis, Shahram Izadi, Jamie Shotton:
Fits Like a Glove: Rapid and Reliable Hand Shape Personalization. CVPR 2016: 5610-5619 - 2015
- [j10]Jirí Kosinka, Thomas J. Cashman:
Watertight conversion of trimmed CAD surfaces to Clough-Tocher splines. Comput. Aided Geom. Des. 37: 25-41 (2015) - 2013
- [j9]Michael S. Floater, Carolina Vittoria Beccari, Thomas J. Cashman, Lucia Romani:
A smoothness criterion for monotonicity-preserving subdivision. Adv. Comput. Math. 39(1): 193-204 (2013) - [j8]Thomas J. Cashman, Kai Hormann, Ulrich Reif:
Generalized Lane-Riesenfeld algorithms. Comput. Aided Geom. Des. 30(4): 398-409 (2013) - [j7]Stefano Marras, Thomas J. Cashman, Kai Hormann:
Efficient Interpolation of Articulated Shapes Using Mixed Shape Spaces. Comput. Graph. Forum 32(8): 258-270 (2013) - [j6]Thomas J. Cashman, Andrew W. Fitzgibbon:
What Shape Are Dolphins? Building 3D Morphable Models from 2D Images. IEEE Trans. Pattern Anal. Mach. Intell. 35(1): 232-244 (2013) - 2012
- [j5]Thomas J. Cashman:
Beyond Catmull-Clark? A Survey of Advances in Subdivision Surface Methods. Comput. Graph. Forum 31(1): 42-61 (2012) - [j4]Thomas J. Cashman, Kai Hormann:
A continuous, editable representation for deforming mesh sequences with separate signals for time, pose and shape. Comput. Graph. Forum 31(2pt4): 735-744 (2012) - [c5]Stefano Marras, Thomas J. Cashman, Kai Hormann:
A Mixed Shape Space for Fast Interpolation of Articulated Shapes. VMV 2012: 159-166 - 2010
- [b1]Thomas J. Cashman:
NURBS-compatible subdivision surfaces. University of Cambridge, UK, 2010
2000 – 2009
- 2009
- [j3]Thomas J. Cashman, Neil A. Dodgson, Malcolm A. Sabin:
A symmetric, non-uniform, refine and smooth subdivision algorithm for general degree B-splines. Comput. Aided Geom. Des. 26(1): 94-104 (2009) - [j2]Thomas J. Cashman, Neil A. Dodgson, Malcolm A. Sabin:
Selective knot insertion for symmetric, non-uniform refine and smooth B-spline subdivision. Comput. Aided Geom. Des. 26(4): 472-479 (2009) - [j1]Thomas J. Cashman, Ursula H. Augsdörfer, Neil A. Dodgson, Malcolm A. Sabin:
NURBS with extraordinary points: high-degree, non-uniform, rational subdivision schemes. ACM Trans. Graph. 28(3): 46 (2009) - [c4]Ursula H. Augsdörfer, Thomas J. Cashman, Neil A. Dodgson, Malcolm A. Sabin:
Numerical Checking of C1 for Arbitrary Degree Quadrilateral Subdivision Schemes. IMA Conference on the Mathematics of Surfaces 2009: 45-54 - [c3]Neil A. Dodgson, Ursula H. Augsdörfer, Thomas J. Cashman, Malcolm A. Sabin:
Deriving Box-Spline Subdivision Schemes. IMA Conference on the Mathematics of Surfaces 2009: 106-123 - 2007
- [c2]Thomas J. Cashman, Neil A. Dodgson, Malcolm A. Sabin:
Non-uniform B-Spline Subdivision Using Refine and Smooth. IMA Conference on the Mathematics of Surfaces 2007: 121-137 - [c1]Malcolm A. Sabin, Thomas J. Cashman, Ursula H. Augsdörfer, Neil A. Dodgson:
Bounded Curvature Subdivision Without Eigenanalysis. IMA Conference on the Mathematics of Surfaces 2007: 391-411
Coauthor Index
aka: Andrew William Fitzgibbon
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last updated on 2024-05-19 00:14 CEST by the dblp team
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