Humans as Light Bulbs: 3D Human Reconstruction from Thermal Reflection
Ruoshi Liu, Carl Vondrick
Abstract
The relatively hot temperature of the human body causes people to turn into long-wave infrared light sources. Since this emitted light has a larger wavelength than visible light, many surfaces in typical scenes act as infrared mirrors with strong specular reflections. We exploit the thermal reflections of a person onto objects in order to locate their position and reconstruct their pose, even if they are not visible to a normal camera. We propose an analysis-by-synthesis framework that jointly models the objects, people, and their thermal reflections, which combines generative models with differentiable rendering of reflections. Quantitative and qualitative experiments show our approach works in highly challenging cases, such as with curved mirrors or when the person is completely unseen by a normal camera.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 68c3d925-4fed-42b0-9069-d739adb4af7eCited by top-tier papers5
- Sin3DM: Learning a Diffusion Model from a Single 3D Textured ShapeRundi Wu, Ruoshi Liu, Carl Vondrick, Changxi ZhengICLR 2024 · 34 citations
- pix2gestalt: Amodal Segmentation by Synthesizing WholesEge Ozguroglu, Ruoshi Liu, Dídac Surís, Dian Chen et al.CVPR 2024 · 24 citations
- Amodal Depth Anything: Amodal Depth Estimation in the WildZhenyu Li, Mykola Lavreniuk, Jian Shi, Shariq Farooq Bhat et al.ICCV 2025
- Seeing the World through Your EyesHadi Alzayer, Kevin Zhang, Brandon Y. Feng, Christopher A. Metzler et al.CVPR 2024
- GES: Generalized Exponential Splatting for Efficient Radiance Field RenderingAbdullah Hamdi, Luke Melas-Kyriazi, Jinjie Mai, Guocheng Qian et al.CVPR 2024
Builds on26
- Instant neural graphics primitives with a multiresolution hash encodingThomas Müller, Alex Evans, Christoph Schied, Alexander KellerSIGGRAPH 2022 · 4,089 citations
- Mip-NeRF: A Multiscale Representation for Anti-Aliasing Neural Radiance FieldsJonathan T. Barron, Ben Mildenhall, Matthew Tancik, Peter Hedman et al.ICCV 2021 · 2,700 citations
- Mip-NeRF 360: Unbounded Anti-Aliased Neural Radiance FieldsJonathan T. Barron, Ben Mildenhall, Dor Verbin, Pratul P. Srinivasan et al.CVPR 2022 · 1,603 citations
- Nerfies: Deformable Neural Radiance FieldsKeunhong Park, Utkarsh Sinha, Jonathan T. Barron, Sofien Bouaziz et al.ICCV 2021 · 1,442 citations
- Learning to Reconstruct 3D Human Pose and Shape via Model-Fitting in the LoopNikos Kolotouros, Georgios Pavlakos, Michael J. Black, Kostas DaniilidisICCV 2019 · 1,139 citations
Related papers
- Dual Band Thermal Videography: Separating Time-Varying Reflection and Emission Near Ambient ConditionsSriram Narayanan, Mani Ramanagopal, Srinivasa G. NarasimhanCVPR 2026 · 1 citation
- Reconstructing 3D Human Pose by Watching Humans in the MirrorQi Fang, Qing Shuai, Junting Dong, Hujun Bao et al.CVPR 2021
- A Dark Flash Normal CameraZhihao Xia, Jason Lawrence, Supreeth AcharICCV 2021 · 6 citations
- VT-Intrinsic: Physics-Based Decomposition of Reflectance and Shading using a Single Visible-Thermal Image PairZeqing Leo Yuan, Mani Ramanagopal, Aswin C. Sankaranarayanan, Srinivasa G. NarasimhanCVPR 2026
- Eclipse: Disambiguating Illumination and Materials Using Unintended ShadowsDor Verbin, Ben Mildenhall, Peter Hedman, Jonathan T. Barron et al.CVPR 2024 · 5 citations
