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Maxim Tatarchenko
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2020 – today
- 2024
- [j3]Ronny Velastegui, Maxim Tatarchenko, Sezer Karaoglu, Theo Gevers:
Image semantic segmentation of indoor scenes: A survey. Comput. Vis. Image Underst. 248: 104102 (2024) - [c10]Jonas Kälble, Sascha Wirges, Maxim Tatarchenko, Eddy Ilg:
Accurate Training Data for Occupancy Map Prediction in Automated Driving Using Evidence Theory. CVPR 2024: 5281-5290 - [c9]Basak Melis Öcal, Maxim Tatarchenko, Sezer Karaoglu, Theo Gevers:
SceneTeller: Language-to-3D Scene Generation. ECCV (85) 2024: 362-378 - [i12]Jonas Kälble, Sascha Wirges, Maxim Tatarchenko, Eddy Ilg:
Accurate Training Data for Occupancy Map Prediction in Automated Driving Using Evidence Theory. CoRR abs/2405.10575 (2024) - [i11]Basak Melis Öcal, Maxim Tatarchenko, Sezer Karaoglu, Theo Gevers:
SceneTeller: Language-to-3D Scene Generation. CoRR abs/2407.20727 (2024) - [i10]Basak Melis Öcal, Maxim Tatarchenko, Sezer Karaoglu, Theo Gevers:
RealDiff: Real-world 3D Shape Completion using Self-Supervised Diffusion Models. CoRR abs/2409.10180 (2024) - 2023
- [i9]Maxim Tatarchenko, Kilian Rambach:
Histogram-based Deep Learning for Automotive Radar. CoRR abs/2303.02975 (2023) - 2021
- [j2]Sudhanshu Mittal, Maxim Tatarchenko, Thomas Brox:
Semi-Supervised Semantic Segmentation With High- and Low-Level Consistency. IEEE Trans. Pattern Anal. Mach. Intell. 43(4): 1369-1379 (2021) - [c8]Jan Bechtold, Maxim Tatarchenko, Volker Fischer, Thomas Brox:
Fostering Generalization in Single-View 3D Reconstruction by Learning a Hierarchy of Local and Global Shape Priors. CVPR 2021: 15880-15889 - [i8]Jan Bechtold, Maxim Tatarchenko, Volker Fischer, Thomas Brox:
Fostering Generalization in Single-view 3D Reconstruction by Learning a Hierarchy of Local and Global Shape Priors. CoRR abs/2104.00476 (2021) - 2020
- [b1]Maxim Tatarchenko:
Scalable 3D deep learning: methods and applications. University of Freiburg, Freiburg im Breisgau, Germany, 2020
2010 – 2019
- 2019
- [c7]Maxim Tatarchenko, Stephan R. Richter, René Ranftl, Zhuwen Li, Vladlen Koltun, Thomas Brox:
What Do Single-View 3D Reconstruction Networks Learn? CVPR 2019: 3405-3414 - [c6]Oier Mees, Maxim Tatarchenko, Thomas Brox, Wolfram Burgard:
Self-supervised 3D Shape and Viewpoint Estimation from Single Images for Robotics. IROS 2019: 6083-6089 - [c5]Anton Böhm, Maxim Tatarchenko, Thorsten Falk:
ISOOV2 DL - Semantic Instance Segmentation of Touching and Overlapping Objects. ISBI 2019: 343-347 - [i7]Maxim Tatarchenko, Stephan R. Richter, René Ranftl, Zhuwen Li, Vladlen Koltun, Thomas Brox:
What Do Single-view 3D Reconstruction Networks Learn? CoRR abs/1905.03678 (2019) - [i6]Sudhanshu Mittal, Maxim Tatarchenko, Thomas Brox:
Semi-Supervised Semantic Segmentation with High- and Low-level Consistency. CoRR abs/1908.05724 (2019) - [i5]Oier Mees, Maxim Tatarchenko, Thomas Brox, Wolfram Burgard:
Self-supervised 3D Shape and Viewpoint Estimation from Single Images for Robotics. CoRR abs/1910.07948 (2019) - [i4]Sudhanshu Mittal, Maxim Tatarchenko, Özgün Çiçek, Thomas Brox:
Parting with Illusions about Deep Active Learning. CoRR abs/1912.05361 (2019) - 2018
- [c4]Maxim Tatarchenko, Jaesik Park, Vladlen Koltun, Qian-Yi Zhou:
Tangent Convolutions for Dense Prediction in 3D. CVPR 2018: 3887-3896 - [i3]Maxim Tatarchenko, Jaesik Park, Vladlen Koltun, Qian-Yi Zhou:
Tangent Convolutions for Dense Prediction in 3D. CoRR abs/1807.02443 (2018) - 2017
- [j1]Alexey Dosovitskiy, Jost Tobias Springenberg, Maxim Tatarchenko, Thomas Brox:
Learning to Generate Chairs, Tables and Cars with Convolutional Networks. IEEE Trans. Pattern Anal. Mach. Intell. 39(4): 692-705 (2017) - [c3]Maxim Tatarchenko, Alexey Dosovitskiy, Thomas Brox:
Octree Generating Networks: Efficient Convolutional Architectures for High-resolution 3D Outputs. ICCV 2017: 2107-2115 - [i2]Maxim Tatarchenko, Alexey Dosovitskiy, Thomas Brox:
Octree Generating Networks: Efficient Convolutional Architectures for High-resolution 3D Outputs. CoRR abs/1703.09438 (2017) - 2016
- [c2]Maxim Tatarchenko, Alexey Dosovitskiy, Thomas Brox:
Multi-view 3D Models from Single Images with a Convolutional Network. ECCV (7) 2016: 322-337 - 2015
- [c1]Barbara Frank, Michael Ruhnke, Maxim Tatarchenko, Wolfram Burgard:
3D-reconstruction of indoor environments from human activity. ICRA 2015: 4644-4649 - [i1]Maxim Tatarchenko, Alexey Dosovitskiy, Thomas Brox:
Single-view to Multi-view: Reconstructing Unseen Views with a Convolutional Network. CoRR abs/1511.06702 (2015)
Coauthor Index
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