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PhysAvatar: Learning the Physics of Dressed 3D Avatars from Visual Observations.

, , , , , , , , , , and . ECCV (37), volume 15095 of Lecture Notes in Computer Science, page 262-284. Springer, (2024)

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Neural Holography., , , , and . SIGGRAPH Emerging Technologies, page 8:1-8:2. ACM, (2020)A Wide-Field-of-View Monocentric Light Field Camera., , , and . CVPR, page 3757-3766. IEEE Computer Society, (2017)pi-GAN: Periodic Implicit Generative Adversarial Networks for 3D-Aware Image Synthesis., , , , and . CoRR, (2020)Neural Sensors: Learning Pixel Exposures for HDR Imaging and Video Compressive Sensing With Programmable Sensors., , , , and . IEEE Trans. Pattern Anal. Mach. Intell., 42 (7): 1642-1653 (2020)Holographic near-eye displays based on overlap-add stereograms., , and . ACM Trans. Graph., 38 (6): 214:1-214:13 (2019)Beyond parallax barriers: applying formal optimization methods to multilayer automultiscopic displays., , , , and . SD&A, volume 8288 of SPIE Proceedings, page 82880A. SPIE, (2012)Deep S3PR: Simultaneous Source Separation and Phase Retrieval Using Deep Generative Models., and . ICASSP, page 1370-1374. IEEE, (2021)D-VDAMP: Denoising-Based Approximate Message Passing for Compressive MRI., and . ICASSP, page 1410-1414. IEEE, (2021)Pi-GAN: Periodic Implicit Generative Adversarial Networks for 3D-Aware Image Synthesis., , , , and . CVPR, page 5799-5809. Computer Vision Foundation / IEEE, (2021)LiFF: Light Field Features in Scale and Depth., , and . CVPR, page 8042-8051. Computer Vision Foundation / IEEE, (2019)