| 2025 | CVPR | Stereo4D: Learning How Things Move in 3D from Internet Stereo Videos. | Linyi Jin, Richard Tucker, Zhengqi Li, David Fouhey, Noah Snavely, Aleksander Holynski |
| 2025 | CVPR | MegaSaM: Accurate, Fast and Robust Structure and Motion from Casual Dynamic Videos. | Zhengqi Li, Richard Tucker, Forrester Cole, Qianqian Wang, Linyi Jin, Vickie Ye, Angjoo Kanazawa, Aleksander Holynski, Noah Snavely |
| 2024 | CVPR | FAR: Flexible, Accurate and Robust 6DoF Relative Camera Pose Estimation. | Chris Rockwell, Nilesh Kulkarni, Linyi Jin, Jeong Joon Park, Justin Johnson, David F. Fouhey |
| 2024 | CVPR | 3DFIRES: Few Image 3D REconstruction for Scenes with Hidden Surfaces. | Linyi Jin, Nilesh Kulkarni, David F. Fouhey |
| 2023 | CVPR | Perspective Fields for Single Image Camera Calibration. | Linyi Jin, Jianming Zhang, Yannick Hold-Geoffroy, Oliver Wang, Kevin Blackburn-Matzen, Matthew Sticha, David F. Fouhey |
| 2023 | CVPR | Learning to Predict Scene-Level Implicit 3D from Posed RGBD Data. | Nilesh Kulkarni, Linyi Jin, Justin Johnson, David F. Fouhey |
| 2023 | HCI | Enhancing Operator Engagement in Safety Critical Control Rooms-Validating Influential Factors and Improving Interview-based Data Collection. | Linyi Jin, Val Mitchell, Andrew J. May, Ning Lu |
| 2022 | CVPR | Understanding 3D Object Articulation in Internet Videos. | Shengyi Qian, Linyi Jin, Chris Rockwell, Siyi Chen, David F. Fouhey |
| 2022 | ECCV | PlaneFormers: From Sparse View Planes to 3D Reconstruction. | Samir Agarwala, Linyi Jin, Chris Rockwell, David F. Fouhey |
| 2022 | HCI | Analysis of the Tasks of Control Room Operators Within Chinese Motorway Control Rooms. | Linyi Jin, Val Mitchell, Andrew J. May, Mei Sun |
| 2021 | ICCV | Planar Surface Reconstruction from Sparse Views. | Linyi Jin, Shengyi Qian, Andrew Owens, David F. Fouhey |
| 2020 | ECCV | Associative3D: Volumetric Reconstruction from Sparse Views. | Shengyi Qian, Linyi Jin, David F. Fouhey |
| 2020 | HCI | Understanding Engagement in the Workplace: Studying Operators in Chinese Traffic Control Rooms. | Linyi Jin, Val Mitchell, Andrew J. May |
| 2019 | ISRR | Inferring Occluded Geometry Improves Performance When Retrieving an Object from Dense Clutter. | Andrew Price, Linyi Jin, Dmitry Berenson |