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Chris Sweeney
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2020 – today
- 2024
- [c31]Qiao Gu, Zhaoyang Lv, Duncan P. Frost, Simon Green, Julian Straub, Chris Sweeney:
EgoLifter: Open-World 3D Segmentation for Egocentric Perception. ECCV (43) 2024: 382-400 - [c30]Longlong Jing, Ruichi Yu, Xu Chen, Zhengli Zhao, Shiwei Sheng, Colin Graber, Qi Chen, Qinru Li, Shangxuan Wu, Han Deng, Sangjin Lee, Chris Sweeney, Qiurui He, Wei-Chih Hung, Tong He, Xingyi Zhou, Farshid Moussavi, James Guo, Yin Zhou, Mingxing Tan, Weilong Yang, Congcong Li:
STT: Stateful Tracking with Transformers for Autonomous Driving. ICRA 2024: 4442-4449 - [i18]Zhaoyang Lv, Nicholas Charron, Pierre Moulon, Alexander Gamino, Cheng Peng, Chris Sweeney, Edward Miller, Huixuan Tang, Jeff Meissner, Jing Dong, Kiran Somasundaram, Luis Pesqueira, Mark Schwesinger, Omkar M. Parkhi, Qiao Gu, Renzo De Nardi, Shangyi Cheng, Steve Saarinen, Vijay Baiyya, Yuyang Zou, Richard A. Newcombe, Jakob Julian Engel, Xiaqing Pan, Carl Yuheng Ren:
Aria Everyday Activities Dataset. CoRR abs/2402.13349 (2024) - [i17]Qiao Gu, Zhaoyang Lv, Duncan P. Frost, Simon Green, Julian Straub, Chris Sweeney:
EgoLifter: Open-world 3D Segmentation for Egocentric Perception. CoRR abs/2403.18118 (2024) - [i16]Longlong Jing, Ruichi Yu, Xu Chen, Zhengli Zhao, Shiwei Sheng, Colin Graber, Qi Chen, Qinru Li, Shangxuan Wu, Han Deng, Sangjin Lee, Chris Sweeney, Qiurui He, Wei-Chih Hung, Tong He, Xingyi Zhou, Farshid Moussavi, Zijian Guo, Yin Zhou, Mingxing Tan, Weilong Yang, Congcong Li:
STT: Stateful Tracking with Transformers for Autonomous Driving. CoRR abs/2405.00236 (2024) - [i15]Julian Straub, Daniel DeTone, Tianwei Shen, Nan Yang, Chris Sweeney, Richard A. Newcombe:
EFM3D: A Benchmark for Measuring Progress Towards 3D Egocentric Foundation Models. CoRR abs/2406.10224 (2024) - 2022
- [j3]Philipp Jund, Chris Sweeney, Nichola Abdo, Zhifeng Chen, Jonathon Shlens:
Scalable Scene Flow From Point Clouds in the Real World. IEEE Robotics Autom. Lett. 7(2): 1589-1596 (2022) - [c29]Gil Avraham, Julian Straub, Tianwei Shen, Tsun-Yi Yang, Hugo Germain, Chris Sweeney, Vasileios Balntas, David Novotný, Daniel DeTone, Richard A. Newcombe:
Nerfels: Renderable Neural Codes for Improved Camera Pose Estimation. CVPR Workshops 2022: 5057-5066 - [c28]Hugo Germain, Daniel DeTone, Geoffrey Pascoe, Tanner Schmidt, David Novotný, Richard A. Newcombe, Chris Sweeney, Richard Szeliski, Vasileios Balntas:
Feature Query Networks: Neural Surface Description for Camera Pose Refinement. CVPR Workshops 2022: 5067-5077 - [c27]Tony Ng, Hyo Jin Kim, Vincent T. Lee, Daniel DeTone, Tsun-Yi Yang, Tianwei Shen, Eddy Ilg, Vassileios Balntas, Krystian Mikolajczyk, Chris Sweeney:
NinjaDesc: Content-Concealing Visual Descriptors via Adversarial Learning. CVPR 2022: 12787-12797 - [c26]Fangyin Wei, Rohan Chabra, Lingni Ma, Christoph Lassner, Michael Zollhöfer, Szymon Rusinkiewicz, Chris Sweeney, Richard A. Newcombe, Mira Slavcheva:
Self-supervised Neural Articulated Shape and Appearance Models. CVPR 2022: 15795-15805 - [c25]Enric Corona, Tomas Hodan, Minh Vo, Francesc Moreno-Noguer, Chris Sweeney, Richard A. Newcombe, Lingni Ma:
LISA: Learning Implicit Shape and Appearance of Hands. CVPR 2022: 20501-20511 - [c24]Yuxin Hou, Tianwei Shen, Tsun-Yi Yang, Daniel DeTone, Hyo Jin Kim, Chris Sweeney, Richard A. Newcombe:
Implicit Map Augmentation for Relocalization. ECCV Workshops (3) 2022: 621-638 - [c23]Daniel Barath, Chris Sweeney:
Relative Pose Solvers using Monocular Depth. ICPR 2022: 4037-4043 - [i14]Enric Corona, Tomas Hodan, Minh Vo, Francesc Moreno-Noguer, Chris Sweeney, Richard A. Newcombe, Lingni Ma:
LISA: Learning Implicit Shape and Appearance of Hands. CoRR abs/2204.01695 (2022) - [i13]Fangyin Wei, Rohan Chabra, Lingni Ma, Christoph Lassner, Michael Zollhöfer, Szymon Rusinkiewicz, Chris Sweeney, Richard A. Newcombe, Mira Slavcheva:
Self-supervised Neural Articulated Shape and Appearance Models. CoRR abs/2205.08525 (2022) - [i12]Gil Avraham, Julian Straub, Tianwei Shen, Tsun-Yi Yang, Hugo Germain, Chris Sweeney, Vasileios Balntas, David Novotný, Daniel DeTone, Richard A. Newcombe:
Nerfels: Renderable Neural Codes for Improved Camera Pose Estimation. CoRR abs/2206.01916 (2022) - 2021
- [c22]Kejie Li, Daniel DeTone, Steven Chen, Minh Vo, Ian Reid, Hamid Rezatofighi, Chris Sweeney, Julian Straub, Richard A. Newcombe:
ODAM: Object Detection, Association, and Mapping using Posed RGB Video. ICCV 2021: 5978-5988 - [i11]Philipp Jund, Chris Sweeney, Nichola Abdo, Zhifeng Chen, Jonathon Shlens:
Scalable Scene Flow from Point Clouds in the Real World. CoRR abs/2103.01306 (2021) - [i10]Kejie Li, Daniel DeTone, Steven Chen, Minh Vo, Ian D. Reid, Hamid Rezatofighi, Chris Sweeney, Julian Straub, Richard A. Newcombe:
ODAM: Object Detection, Association, and Mapping using Posed RGB Video. CoRR abs/2108.10165 (2021) - [i9]Tony Ng, Hyo Jin Kim, Vincent T. Lee, Daniel DeTone, Tsun-Yi Yang, Tianwei Shen, Eddy Ilg, Vassileios Balntas, Krystian Mikolajczyk, Chris Sweeney:
NinjaDesc: Content-Concealing Visual Descriptors via Adversarial Learning. CoRR abs/2112.12785 (2021) - 2020
- [c21]Aleksander Holynski, David Geraghty, Jan-Michael Frahm, Chris Sweeney, Richard Szeliski:
Reducing Drift in Structure From Motion Using Extended Features. 3DV 2020: 51-60 - [c20]Sungyong Baik, Hyo Jin Kim, Tianwei Shen, Eddy Ilg, Kyoung Mu Lee, Christopher Sweeney:
Domain Adaptation of Learned Featuresfor Visual Localization. BMVC 2020 - [c19]Chris Sweeney, Maryam Najafian:
Reducing sentiment polarity for demographic attributes in word embeddings using adversarial learning. FAT* 2020: 359-368 - [i8]Sungyong Baik, Hyo Jin Kim, Tianwei Shen, Eddy Ilg, Kyoung Mu Lee, Chris Sweeney:
Domain Adaptation of Learned Features for Visual Localization. CoRR abs/2008.09310 (2020) - [i7]Aleksander Holynski, David Geraghty, Jan-Michael Frahm, Chris Sweeney, Richard Szeliski:
Reducing Drift in Structure from Motion using Extended Features. CoRR abs/2008.12295 (2020)
2010 – 2019
- 2019
- [c18]Chris Sweeney, Maryam Najafian:
A Transparent Framework for Evaluating Unintended Demographic Bias in Word Embeddings. ACL (1) 2019: 1662-1667 - [c17]Rohan Chabra, Julian Straub, Christopher Sweeney, Richard A. Newcombe, Henry Fuchs:
StereoDRNet: Dilated Residual StereoNet. CVPR 2019: 11786-11795 - [c16]Chris Sweeney, Greg Izatt, Russ Tedrake:
A Supervised Approach to Predicting Noise in Depth Images. ICRA 2019: 796-802 - [i6]Rohan Chabra, Julian Straub, Chris Sweeney, Richard A. Newcombe, Henry Fuchs:
StereoDRNet: Dilated Residual Stereo Net. CoRR abs/1904.02251 (2019) - [i5]Chris Sweeney, Aleksander Holynski, Brian Curless, Steven M. Seitz:
Structure from Motion for Panorama-Style Videos. CoRR abs/1906.03539 (2019) - 2018
- [c15]Ini Oguntola, Subby Olubeko, Christopher Sweeney:
SlimNets: An Exploration of Deep Model Compression and Acceleration. HPEC 2018: 1-6 - [i4]Ini Oguntola, Subby Olubeko, Christopher Sweeney:
SlimNets: An Exploration of Deep Model Compression and Acceleration. CoRR abs/1808.00496 (2018) - 2017
- [c14]Qiaodong Cui, Victor Fragoso, Chris Sweeney, Pradeep Sen:
GraphMatch: Efficient Large-Scale Graph Construction for Structure from Motion. 3DV 2017: 165-174 - [c13]Victor Fragoso, Christopher Sweeney, Pradeep Sen, Matthew A. Turk:
ANSAC: Adaptive Non-Minimal Sample and Consensus. BMVC 2017 - [i3]Victor Fragoso, Chris Sweeney, Pradeep Sen, Matthew A. Turk:
ANSAC: Adaptive Non-minimal Sample and Consensus. CoRR abs/1709.09559 (2017) - [i2]Qiaodong Cui, Victor Fragoso, Chris Sweeney, Pradeep Sen:
GraphMatch: Efficient Large-Scale Graph Construction for Structure from Motion. CoRR abs/1710.01602 (2017) - 2016
- [b1]Chris Sweeney:
Modeling and Calibrating the Distributed Camera. University of California, Santa Barbara, USA, 2016 - [j2]Daniela Börnigen, Svitlana Tyekucheva, Xiaodong Wang, Jennifer R. Rider, Gwo-Shu Lee, Lorelei A. Mucci, Christopher Sweeney, Curtis Huttenhower:
Computational Reconstruction of NFκB Pathway Interaction Mechanisms during Prostate Cancer. PLoS Comput. Biol. 12(4) (2016) - [c12]Chris Sweeney, Victor Fragoso, Tobias Höllerer, Matthew A. Turk:
Large Scale SfM with the Distributed Camera Model. 3DV 2016: 230-238 - [c11]Benjamin Nuernberger, Kuo-Chin Lien, Lennon Grinta, Chris Sweeney, Matthew A. Turk, Tobias Höllerer:
Multi-view gesture annotations in image-based 3D reconstructed scenes. VRST 2016: 129-138 - [c10]Laurent Kneip, Chris Sweeney, Richard Hartley:
The generalized relative pose and scale problem: View-graph fusion via 2D-2D registration. WACV 2016: 1-9 - [i1]Chris Sweeney, Victor Fragoso, Tobias Höllerer, Matthew A. Turk:
Large Scale SfM with the Distributed Camera Model. CoRR abs/1607.03949 (2016) - 2015
- [c9]Chris Sweeney, Laurent Kneip, Tobias Höllerer, Matthew A. Turk:
Computing similarity transformations from only image correspondences. CVPR 2015: 3305-3313 - [c8]Chris Sweeney, Torsten Sattler, Tobias Höllerer, Matthew A. Turk, Marc Pollefeys:
Optimizing the Viewing Graph for Structure-from-Motion. ICCV 2015: 801-809 - [c7]Chris Sweeney, John Flynn, Benjamin Nuernberger, Matthew A. Turk, Tobias Höllerer:
Efficient Computation of Absolute Pose for Gravity-Aware Augmented Reality. ISMAR 2015: 19-24 - [c6]Christopher Sweeney, Tobias Höllerer, Matthew A. Turk:
Theia: A Fast and Scalable Structure-from-Motion Library. ACM Multimedia 2015: 693-696 - 2014
- [j1]Steffen Gauglitz, Chris Sweeney, Jonathan Ventura, Matthew A. Turk, Tobias Höllerer:
Model Estimation and Selection towardsUnconstrained Real-Time Tracking and Mapping. IEEE Trans. Vis. Comput. Graph. 20(6): 825-838 (2014) - [c5]Chris Sweeney, John Flynn, Matthew A. Turk:
Solving for Relative Pose with a Partially Known Rotation is a Quadratic Eigenvalue Problem. 3DV 2014: 483-490 - [c4]Chris Sweeney, Victor Fragoso, Tobias Höllerer, Matthew A. Turk:
gDLS: A Scalable Solution to the Generalized Pose and Scale Problem. ECCV (4) 2014: 16-31 - [c3]Torsten Sattler, Chris Sweeney, Marc Pollefeys:
On Sampling Focal Length Values to Solve the Absolute Pose Problem. ECCV (4) 2014: 828-843 - 2013
- [c2]Chris Sweeney, Tobias Höllerer, Matthew A. Turk:
Improved outdoor augmented reality through "Globalization". ISMAR 2013: 1-4 - 2012
- [c1]Steffen Gauglitz, Chris Sweeney, Jonathan Ventura, Matthew A. Turk, Tobias Höllerer:
Live tracking and mapping from both general and rotation-only camera motion. ISMAR 2012: 13-22
Coauthor Index
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last updated on 2025-01-09 13:09 CET by the dblp team
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