William T. Freeman
Publication record assembled from the DBLP archive of ranked conferences.
Papers indexed
160
Venues
21
Active years
1990–2026
Best venue rank
A*
Where they publish
Papers
160 indexed papers, newest first.
| Year | Venue | Title | Authors |
|---|---|---|---|
| 2026 | CHI | Y-zipper: 3D Printing Flexible-Rigid Transition Mechanism for Rapid and Reversible Assembly. | Jiaji Li, Xiang Chang, Mingming Li, Dingning Cao, Maxine Perroni-Scharf, Jeremy Mrzyglocki, Takumi Yamamoto, William T. Freeman, Stefanie Mueller |
| 2026 | CHI | VisiPrint: Previewing 3D-Print Appearance from Real Material Samples. | Maxine Perroni-Scharf, Faraz Faruqi, Sooyeon Ahn, Raul Hernandez, Szymon Rusinkiewicz, William T. Freeman, Stefanie Mueller |
| 2025 | CVPR | Eval3D: Interpretable and Fine-grained Evaluation for 3D Generation. | Shivam Duggal, Yushi Hu, Oscar Michel, Aniruddha Kembhavi, William T. Freeman, Noah A. Smith, Ranjay Krishna, Antonio Torralba, Ali Farhadi, Wei-Chiu Ma |
| 2025 | CVPR | RandAR: Decoder-only Autoregressive Visual Generation in Random Orders. | Ziqi Pang, Tianyuan Zhang, Fujun Luan, Yunze Man, Hao Tan, Kai Zhang, William T. Freeman, Yu-Xiong Wang |
| 2025 | CVPR | From Slow Bidirectional to Fast Autoregressive Video Diffusion Models. | Tianwei Yin, Qiang Zhang, Richard Zhang, William T. Freeman, Frdo Durand, Eli Shechtman, Xun Huang |
| 2025 | CVPR | WonderWorld: Interactive 3D Scene Generation from a Single Image. | Hong-Xing Yu, Haoyi Duan, Charles Herrmann, William T. Freeman, Jiajun Wu |
| 2025 | ICLR | I-Con: A Unifying Framework for Representation Learning. | Shaden Naif Alshammari, John R. Hershey, Axel Feldmann, William T. Freeman, Mark Hamilton |
| 2025 | ICLR | Adaptive Length Image Tokenization via Recurrent Allocation. | Shivam Duggal, Phillip Isola, Antonio Torralba, William T. Freeman |
| 2025 | ICLR | RelitLRM: Generative Relightable Radiance for Large Reconstruction Models. | Tianyuan Zhang, Zhengfei Kuang, Haian Jin, Zexiang Xu, Sai Bi, Hao Tan, He Zhang, Yiwei Hu, Milos Hasan, William T. Freeman, Kai Zhang, Fujun Luan |
| 2025 | SIGGRAPH | Graphics4Science: Computer Graphics for Scientific Impacts. | Peter Yichen Chen, Minghao Guo, Hanspeter Pfister, Ming C. Lin, William T. Freeman, Qixing Huang, Han-Wei Shen, Wojciech Matusik |
| 2024 | CVPR | Separating the "Chirp" from the "Chat": Self-supervised Visual Grounding of Sound and Language. | Mark Hamilton, Andrew Zisserman, John R. Hershey, William T. Freeman |
| 2024 | CVPR | One-Step Diffusion with Distribution Matching Distillation. | Tianwei Yin, Michal Gharbi, Richard Zhang, Eli Shechtman, Frdo Durand, William T. Freeman, Taesung Park |
| 2024 | CVPR | WonderJourney: Going from Anywhere to Everywhere. | Hong-Xing Yu, Haoyi Duan, Junhwa Hur, Kyle Sargent, Michael Rubinstein, William T. Freeman, Forrester Cole, Deqing Sun, Noah Snavely, Jiajun Wu, Charles Herrmann |
| 2024 | ECCV | Seeing Faces in Things: A Model and Dataset for Pareidolia. | Mark Hamilton, Simon Stent, Vasha DuTell, Anne Harrington, Jennifer Corbett, Ruth Rosenholtz, William T. Freeman |
| 2024 | ECCV | PhysDreamer: Physics-Based Interaction with 3D Objects via Video Generation. | Tianyuan Zhang, Hong-Xing Yu, Rundi Wu, Brandon Y. Feng, Changxi Zheng, Noah Snavely, Jiajun Wu, William T. Freeman |
| 2024 | ICLR | FeatUp: A Model-Agnostic Framework for Features at Any Resolution. | Stephanie Fu, Mark Hamilton, Laura E. Brandt, Axel Feldmann, Zhoutong Zhang, William T. Freeman |
| 2024 | ICLR | COCO-Periph: Bridging the Gap Between Human and Machine Perception in the Periphery. | Anne Harrington, Vasha DuTell, Mark Hamilton, Ayush Tewari, Simon Stent, William T. Freeman, Ruth Rosenholtz |
| 2023 | CVPR | MetaCLUE: Towards Comprehensive Visual Metaphors Research. | Arjun R. Akula, Brendan Driscoll, Pradyumna Narayana, Soravit Changpinyo, Zhiwei Jia, Suyash Damle, Garima Pruthi, Sugato Basu, Leonidas J. Guibas, William T. Freeman, Yuanzhen Li, Varun Jampani |
| 2023 | ICCV | 3D Motion Magnification: Visualizing Subtle Motions with Time-Varying Radiance Fields. | Brandon Y. Feng, Hadi Alzayer, Michael Rubinstein, William T. Freeman, Jia-Bin Huang |
| 2023 | ICCV | Score-Based Diffusion Models as Principled Priors for Inverse Imaging. | Berthy T. Feng, Jamie Smith, Michael Rubinstein, Huiwen Chang, Katherine L. Bouman, William T. Freeman |
| 2023 | ICLR | Exploring perceptual straightness in learned visual representations. | Anne Harrington, Vasha DuTell, Ayush Tewari, Mark Hamilton, Simon Stent, Ruth Rosenholtz, William T. Freeman |
| 2023 | ICLR | Neural Groundplans: Persistent Neural Scene Representations from a Single Image. | Prafull Sharma, Ayush Tewari, Yilun Du, Sergey Zakharov, Rares Andrei Ambrus, Adrien Gaidon, William T. Freeman, Frdo Durand, Joshua B. Tenenbaum, Vincent Sitzmann |
| 2023 | ICML | Muse: Text-To-Image Generation via Masked Generative Transformers. | Huiwen Chang, Han Zhang, Jarred Barber, Aaron Maschinot, Jos Lezama, Lu Jiang, Ming-Hsuan Yang, Kevin Patrick Murphy, William T. Freeman, Michael Rubinstein, Yuanzhen Li, Dilip Krishnan |
| 2023 | Interspeech | Large-Scale Automatic Audiobook Creation. | Brendan Walsh, Mark Hamilton, Greg Newby, Xi Wang, Serena Ruan, Sheng Zhao, Lei He, Shaofei Zhang, Eric Dettinger, William T. Freeman, Markus Weimer |
| 2023 | WACV | Can Shadows Reveal Biometric Informationƒ. | Safa C. Medin, Amir Weiss, Frdo Durand, William T. Freeman, Gregory W. Wornell |
| 2022 | CVPR | MaskGIT: Masked Generative Image Transformer. | Huiwen Chang, Han Zhang, Lu Jiang, Ce Liu, William T. Freeman |
| 2022 | ECCV | Disentangling Architecture and Training for Optical Flow. | Deqing Sun, Charles Herrmann, Fitsum A. Reda, Michael Rubinstein, David J. Fleet, William T. Freeman |
| 2022 | ECCV | Structure and Motion from Casual Videos. | Zhoutong Zhang, Forrester Cole, Zhengqi Li, Michael Rubinstein, Noah Snavely, William T. Freeman |
| 2022 | ICLR | Axiomatic Explanations for Visual Search, Retrieval, and Similarity Learning. | Mark Hamilton, Scott M. Lundberg, Stephanie Fu, Lei Zhang, William T. Freeman |
| 2022 | ICLR | Unsupervised Semantic Segmentation by Distilling Feature Correspondences. | Mark Hamilton, Zhoutong Zhang, Bharath Hariharan, Noah Snavely, William T. Freeman |
| 2021 | CVPR | Omnimatte: Associating Objects and Their Effects in Video. | Erika Lu, Forrester Cole, Tali Dekel, Andrew Zisserman, William T. Freeman, Michael Rubinstein |
| 2021 | CVPR | AutoFlow: Learning a Better Training Set for Optical Flow. | Deqing Sun, Daniel Vlasic, Charles Herrmann, Varun Jampani, Michael Krainin, Huiwen Chang, Ramin Zabih, William T. Freeman, Ce Liu |
| 2021 | CVPR | LASR: Learning Articulated Shape Reconstruction From a Monocular Video. | Gengshan Yang, Deqing Sun, Varun Jampani, Daniel Vlasic, Forrester Cole, Huiwen Chang, Deva Ramanan, William T. Freeman, Ce Liu |
| 2021 | CVPR | Neural Descent for Visual 3D Human Pose and Shape. | Andrei Zanfir, Eduard Gabriel Bazavan, Mihai Zanfir, William T. Freeman, Rahul Sukthankar, Cristian Sminchisescu |
| 2021 | ICCV | SLIDE: Single Image 3D Photography with Soft Layering and Depth-aware Inpainting. | Varun Jampani, Huiwen Chang, Kyle Sargent, Abhishek Kar, Richard Tucker, Michael Krainin, Dominik Kaeser, William T. Freeman, David Salesin, Brian Curless, Ce Liu |
| 2021 | ICCV | Explaining in Style: Training a GAN to explain a classifier in StyleSpace. | Oran Lang, Yossi Gandelsman, Michal Yarom, Yoav Wald, Gal Elidan, Avinatan Hassidim, William T. Freeman, Phillip Isola, Amir Globerson, Michal Irani, Inbar Mosseri |
| 2021 | ICCV | What You Can Learn by Staring at a Blank Wall. | Prafull Sharma, Miika Aittala, Yoav Y. Schechner, Antonio Torralba, Gregory W. Wornell, William T. Freeman, Frdo Durand |
| 2021 | ICCV | THUNDR: Transformer-based 3D HUmaN Reconstruction with Markers. | Mihai Zanfir, Andrei Zanfir, Eduard Gabriel Bazavan, William T. Freeman, Rahul Sukthankar, Cristian Sminchisescu |
| 2021 | ICDAR | Toward Automatic Interpretation of 3D Plots. | Laura E. Brandt, William T. Freeman |
| 2020 | CVPR | SpeedNet: Learning the Speediness in Videos. | Sagie Benaim, Ariel Ephrat, Oran Lang, Inbar Mosseri, William T. Freeman, Michael Rubinstein, Michal Irani, Tali Dekel |
| 2020 | CVPR | Perspective Plane Program Induction From a Single Image. | Yikai Li, Jiayuan Mao, Xiuming Zhang, William T. Freeman, Joshua B. Tenenbaum, Jiajun Wu |
| 2020 | CVPR | Semantic Pyramid for Image Generation. | Assaf Shocher, Yossi Gandelsman, Inbar Mosseri, Michal Yarom, Michal Irani, William T. Freeman, Tali Dekel |
| 2020 | CVPR | GHUM & GHUML: Generative 3D Human Shape and Articulated Pose Models. | Hongyi Xu, Eduard Gabriel Bazavan, Andrei Zanfir, William T. Freeman, Rahul Sukthankar, Cristian Sminchisescu |
| 2020 | ECCV | Weakly Supervised 3D Human Pose and Shape Reconstruction with Normalizing Flows. | Andrei Zanfir, Eduard Gabriel Bazavan, Hongyi Xu, William T. Freeman, Rahul Sukthankar, Cristian Sminchisescu |
| 2020 | ICLR | Deep Audio Priors Emerge From Harmonic Convolutional Networks. | Zhoutong Zhang, Yunyun Wang, Chuang Gan, Jiajun Wu, Joshua B. Tenenbaum, Antonio Torralba, William T. Freeman |
| 2019 | CVPR | Learning the Depths of Moving People by Watching Frozen People. | Zhengqi Li, Tali Dekel, Forrester Cole, Richard Tucker, Noah Snavely, Ce Liu, William T. Freeman |
| 2019 | CVPR | Speech2Face: Learning the Face Behind a Voice. | Tae-Hyun Oh, Tali Dekel, Changil Kim, Inbar Mosseri, William T. Freeman, Michael Rubinstein, Wojciech Matusik |
| 2019 | CVPR | Using Unknown Occluders to Recover Hidden Scenes. | Adam B. Yedidia, Manel Baradad, Christos Thrampoulidis, William T. Freeman, Gregory W. Wornell |
| 2019 | ICCP | Corner Occluder Computational Periscopy: Estimating a Hidden Scene from a Single Photograph. | Sheila W. Seidel, Yanting Ma, John Murray-Bruce, Charles Saunders, William T. Freeman, Christopher C. Yu, Vivek K. Goyal |
| 2019 | ICCV | Visual Deprojection: Probabilistic Recovery of Collapsed Dimensions. | Guha Balakrishnan, Adrian V. Dalca, Amy Zhao, John V. Guttag, Frdo Durand, William T. Freeman |
| 2019 | ICCV | Learning Shape Templates With Structured Implicit Functions. | Kyle Genova, Forrester Cole, Daniel Vlasic, Aaron Sarna, William T. Freeman, Thomas A. Funkhouser |
| 2019 | ICCV | Boundless: Generative Adversarial Networks for Image Extension. | Dilip Krishnan, Piotr Teterwak, Aaron Sarna, Aaron Maschinot, Ce Liu, David Belanger, William T. Freeman |
| 2019 | ICCV | Program-Guided Image Manipulators. | Xiuming Zhang, Jiayuan Mao, Yikai Li, William T. Freeman, Joshua B. Tenenbaum, Jiajun Wu |
| 2019 | ICLR | GAN Dissection: Visualizing and Understanding Generative Adversarial Networks. | David Bau, Jun-Yan Zhu, Hendrik Strobelt, Bolei Zhou, Joshua B. Tenenbaum, William T. Freeman, Antonio Torralba |
| 2019 | ICLR | Visualizing and Understanding GANs. | David Bau, Jun-Yan Zhu, Hendrik Strobelt, Bolei Zhou, Joshua B. Tenenbaum, William T. Freeman, Antonio Torralba |
| 2019 | ICLR | Reasoning About Physical Interactions with Object-Oriented Prediction and Planning. | Michael Janner, Sergey Levine, William T. Freeman, Joshua B. Tenenbaum, Chelsea Finn, Jiajun Wu |
| 2019 | ICLR | Learning to Describe Scenes with Programs. | Yunchao Liu, Zheng Wu, Daniel Ritchie, William T. Freeman, Joshua B. Tenenbaum, Jiajun Wu |
| 2019 | ICLR | Learning to Infer and Execute 3D Shape Programs. | Yonglong Tian, Andrew Luo, Xingyuan Sun, Kevin Ellis, William T. Freeman, Joshua B. Tenenbaum, Jiajun Wu |
| 2019 | ICLR | Unsupervised Discovery of Parts, Structure, and Dynamics. | Zhenjia Xu, Zhijian Liu, Chen Sun, Kevin Murphy, William T. Freeman, Joshua B. Tenenbaum, Jiajun Wu |
| 2019 | ICRA | ChainQueen: A Real-Time Differentiable Physical Simulator for Soft Robotics. | Yuanming Hu, Jiancheng Liu, Andrew Spielberg, Joshua B. Tenenbaum, William T. Freeman, Jiajun Wu, Daniela Rus, Wojciech Matusik |
| 2018 | CHI | Cognitive Load Estimation in the Wild. | Lex Fridman, Bryan Reimer, Bruce Mehler, William T. Freeman |
| 2018 | CVPR | Inferring Light Fields From Shadows. | Manel Baradad, Vickie Ye, Adam B. Yedidia, Frdo Durand, William T. Freeman, Gregory W. Wornell, Antonio Torralba |
| 2018 | CVPR | Sparse, Smart Contours to Represent and Edit Images. | Tali Dekel, Chuang Gan, Dilip Krishnan, Ce Liu, William T. Freeman |
| 2018 | CVPR | Unsupervised Training for 3D Morphable Model Regression. | Kyle Genova, Forrester Cole, Aaron Maschinot, Aaron Sarna, Daniel Vlasic, William T. Freeman |
| 2018 | CVPR | Pix3D: Dataset and Methods for Single-Image 3D Shape Modeling. | Xingyuan Sun, Jiajun Wu, Xiuming Zhang, Zhoutong Zhang, Chengkai Zhang, Tianfan Xue, Joshua B. Tenenbaum, William T. Freeman |
| 2018 | CVPR | Learning and Using the Arrow of Time. | Donglai Wei, Joseph J. Lim, Andrew Zisserman, William T. Freeman |
| 2018 | CVPR | Inverting Audio-Visual Simulation for Shape and Material Perception. | Zhoutong Zhang, Jiajun Wu, Qiujia Li, Zhengjia Huang, Joshua B. Tenenbaum, William T. Freeman |
| 2018 | ECCV | Physical Primitive Decomposition. | Zhijian Liu, William T. Freeman, Joshua B. Tenenbaum, Jiajun Wu |
| 2018 | ECCV | Learning-Based Video Motion Magnification. | Tae-Hyun Oh, Ronnachai Jaroensri, Changil Kim, Mohamed A. Elgharib, Frdo Durand, William T. Freeman, Wojciech Matusik |
| 2018 | ECCV | Learning Shape Priors for Single-View 3D Completion And Reconstruction. | Jiajun Wu, Chengkai Zhang, Xiuming Zhang, Zhoutong Zhang, William T. Freeman, Joshua B. Tenenbaum |
| 2018 | ECCV | Seeing Tree Structure from Vibration. | Tianfan Xue, Jiajun Wu, Zhoutong Zhang, Chengkai Zhang, Joshua B. Tenenbaum, William T. Freeman |
| 2018 | IROS | 3D Shape Perception from Monocular Vision, Touch, and Shape Priors. | Shaoxiong Wang, Jiajun Wu, Xingyuan Sun, Wenzhen Yuan, William T. Freeman, Joshua B. Tenenbaum, Edward H. Adelson |
| 2018 | UIST | MoSculp: Interactive Visualization of Shape and Time. | Xiuming Zhang, Tali Dekel, Tianfan Xue, Andrew Owens, Qiurui He, Jiajun Wu, Stefanie Mueller, William T. Freeman |
| 2017 | CVPR | Synthesizing Normalized Faces from Facial Identity Features. | Forrester Cole, David Belanger, Dilip Krishnan, Aaron Sarna, Inbar Mosseri, William T. Freeman |
| 2017 | CVPR | On the Effectiveness of Visible Watermarks. | Tali Dekel, Michael Rubinstein, Ce Liu, William T. Freeman |
| 2017 | ICCV | Turning Corners into Cameras: Principles and Methods. | Katherine L. Bouman, Vickie Ye, Adam B. Yedidia, Frdo Durand, Gregory W. Wornell, Antonio Torralba, William T. Freeman |
| 2017 | ICCV | Generative Modeling of Audible Shapes for Object Perception. | Zhoutong Zhang, Jiajun Wu, Qiujia Li, Zhengjia Huang, James Traer, Josh H. McDermott, Joshua B. Tenenbaum, William T. Freeman |
| 2016 | BMVC | Physics 101: Learning Physical Object Properties from Unlabeled Videos. | Jiajun Wu, Joseph J. Lim, Hongyi Zhang, Joshua B. Tenenbaum, William T. Freeman |
| 2016 | CogSci | A Comparative Evaluation of Approximate Probabilistic Simulation and Deep Neural Networks as Accounts of Human Physical Scene Understanding. | Renqiao Zhang, Jiajun Wu, Chengkai Zhang, William T. Freeman, Joshua B. Tenenbaum |
| 2016 | CVPR | Computational Imaging for VLBI Image Reconstruction. | Katherine L. Bouman, Michael D. Johnson, Daniel Zoran, Vincent L. Fish, Sheperd S. Doeleman, William T. Freeman |
| 2016 | CVPR | Visually Indicated Sounds. | Andrew Owens, Phillip Isola, Josh H. McDermott, Antonio Torralba, Edward H. Adelson, William T. Freeman |
| 2016 | ECCV | Single Image 3D Interpreter Network. | Jiajun Wu, Tianfan Xue, Joseph J. Lim, Yuandong Tian, Joshua B. Tenenbaum, Antonio Torralba, William T. Freeman |
| 2016 | ECCV | Ambient Sound Provides Supervision for Visual Learning. | Andrew Owens, Jiajun Wu, Josh H. McDermott, William T. Freeman, Antonio Torralba |
| 2015 | CVPR | Visual vibrometry: Estimating material properties from small motions in video. | Abe Davis, Katherine L. Bouman, Justin G. Chen, Michael Rubinstein, Frdo Durand, William T. Freeman |
| 2015 | CVPR | Best-Buddies Similarity for robust template matching. | Tali Dekel, Shaul Oron, Michael Rubinstein, Shai Avidan, William T. Freeman |
| 2015 | CVPR | Video magnification in presence of large motions. | Mohamed A. Elgharib, Mohamed Hefeeda, Frdo Durand, William T. Freeman |
| 2015 | CVPR | Reflection removal using ghosting cues. | Yichang Shih, Dilip Krishnan, Frdo Durand, William T. Freeman |
| 2015 | CVPR | The aperture problem for refractive motion. | Tianfan Xue, Hossein Mobahi, Frdo Durand, William T. Freeman |
| 2015 | ICCV | Learning Ordinal Relationships for Mid-Level Vision. | Daniel Zoran, Phillip Isola, Dilip Krishnan, William T. Freeman |
| 2014 | CVPR | A Compositional Model for Low-Dimensional Image Set Representation. | Hossein Mobahi, Ce Liu, William T. Freeman |
| 2014 | CVPR | Camouflaging an Object from Many Viewpoints. | Andrew Owens, Connelly Barnes, Alex Flint, Hanumant Singh, William T. Freeman |
| 2014 | CVPR | Seeing the Arrow of Time. | Lyndsey C. Pickup, Zheng Pan, Donglai Wei, Yi-Chang Shih, Changshui Zhang, Andrew Zisserman, Bernhard Schlkopf, William T. Freeman |
| 2014 | ECCV | Refraction Wiggles for Measuring Fluid Depth and Velocity from Video. | Tianfan Xue, Michael Rubinstein, Neal Wadhwa, Anat Levin, Frdo Durand, William T. Freeman |
| 2014 | ICCP | Rethinking color cameras. | Ayan Chakrabarti, William T. Freeman, Todd E. Zickler |
| 2014 | ICCP | Riesz pyramids for fast phase-based video magnification. | Neal Wadhwa, Michael Rubinstein, Frdo Durand, William T. Freeman |
| 2013 | ICCV | Estimating the Material Properties of Fabric from Video. | Katherine L. Bouman, Bei Xiao, Peter W. Battaglia, William T. Freeman |
| 2013 | ICCV | Group Norm for Learning Structured SVMs with Unstructured Latent Variables. | Daozheng Chen, Dhruv Batra, William T. Freeman |
| 2013 | ICCV | Shape Anchors for Data-Driven Multi-view Reconstruction. | Andrew Owens, Jianxiong Xiao, Antonio Torralba, William T. Freeman |
| 2012 | CVPR | Laser speckle photography for surface tampering detection. | Yichang Shih, Abe Davis, Samuel W. Hasinoff, Frdo Durand, William T. Freeman |
| 2012 | CVPR | Accidental pinhole and pinspeck cameras: Revealing the scene outside the picture. | Antonio Torralba, William T. Freeman |
| 2012 | ECCV | Shapecollage: Occlusion-Aware, Example-Based Shape Interpretation. | Forrester Cole, Phillip Isola, William T. Freeman, Frdo Durand, Edward H. Adelson |
| 2012 | ECCV | Patch Complexity, Finite Pixel Correlations and Optimal Denoising. | Anat Levin, Boaz Nadler, Frdo Durand, William T. Freeman |
| 2012 | ECCV | Annotation Propagation in Large Image Databases via Dense Image Correspondence. | Michael Rubinstein, Ce Liu, William T. Freeman |
| 2012 | UAI | Exploiting compositionality to explore a large space of model structures. | Roger B. Grosse, Ruslan Salakhutdinov, William T. Freeman, Joshua B. Tenenbaum |
| 2011 | CVPR | Blur kernel estimation using the radon transform. | Taeg Sang Cho, Sylvain Paris, Berthold K. P. Horn, William T. Freeman |
| 2011 | CVPR | Efficient marginal likelihood optimization in blind deconvolution. | Anat Levin, Yair Weiss, Frdo Durand, William T. Freeman |
| 2011 | CVPR | Motion denoising with application to time-lapse photography. | Michael Rubinstein, Ce Liu, Peter Sand, Frdo Durand, William T. Freeman |
| 2011 | ICCV | Diffuse reflectance imaging with astronomical applications. | Samuel W. Hasinoff, Anat Levin, Philip R. Goode, William T. Freeman |
| 2011 | ICCV | Evaluation of image features using a photorealistic virtual world. | Biliana Kaneva, Antonio Torralba, William T. Freeman |
| 2011 | SODA | Where computer vision needs help from computer science. | William T. Freeman |
| 2010 | CVPR | Analyzing spatially-varying blur. | Ayan Chakrabarti, Todd E. Zickler, William T. Freeman |
| 2010 | CVPR | A probabilistic image jigsaw puzzle solver. | Taeg Sang Cho, Shai Avidan, William T. Freeman |
| 2010 | CVPR | A content-aware image prior. | Taeg Sang Cho, Neel Joshi, C. Lawrence Zitnick, Sing Bing Kang, Richard Szeliski, William T. Freeman |
| 2010 | CVPR | Noise-optimal capture for high dynamic range photography. | Samuel W. Hasinoff, Frdo Durand, William T. Freeman |
| 2010 | CVPR | Part and appearance sharing: Recursive Compositional Models for multi-view. | Long Zhu, Yuanhao Chen, Antonio Torralba, William T. Freeman, Alan L. Yuille |
| 2010 | CVPR | Latent hierarchical structural learning for object detection. | Long Zhu, Yuanhao Chen, Alan L. Yuille, William T. Freeman |
| 2010 | ECCV | A High-Quality Video Denoising Algorithm Based on Reliable Motion Estimation. | Ce Liu, William T. Freeman |
| 2009 | CVPR | Understanding and evaluating blind deconvolution algorithms. | Anat Levin, Yair Weiss, Frdo Durand, William T. Freeman |
| 2009 | ICCV | Ground truth dataset and baseline evaluations for intrinsic image algorithms. | Roger B. Grosse, Micah K. Johnson, Edward H. Adelson, William T. Freeman |
| 2009 | ICCV | Time-constrained photography. | Samuel W. Hasinoff, Kiriakos N. Kutulakos, Frdo Durand, William T. Freeman |
| 2009 | ICIP | Informative sensing of natural images. | Hyun Sung Chang, Yair Weiss, William T. Freeman |
| 2008 | CVPR | The patch transform and its applications to image editing. | Taeg Sang Cho, Moshe Butman, Shai Avidan, William T. Freeman |
| 2008 | CVPR | Human-assisted motion annotation. | Ce Liu, William T. Freeman, Edward H. Adelson, Yair Weiss |
| 2008 | CVPR | Creating and exploring a large photorealistic virtual space. | Josef Sivic, Biliana Kaneva, Antonio Torralba, Shai Avidan, William T. Freeman |
| 2008 | CVPR | Unsupervised discovery of visual object class hierarchies. | Josef Sivic, Bryan C. Russell, Andrew Zisserman, William T. Freeman, Alexei A. Efros |
| 2008 | ECCV | Understanding Camera Trade-Offs through a Bayesian Analysis of Light Field Projections. | Anat Levin, William T. Freeman, Frdo Durand |
| 2008 | ECCV | SIFT Flow: Dense Correspondence across Different Scenes. | Ce Liu, Jenny Yuen, Antonio Torralba, Josef Sivic, William T. Freeman |
| 2007 | CVPR | Learning Gaussian Conditional Random Fields for Low-Level Vision. | Marshall F. Tappen, Ce Liu, Edward H. Adelson, William T. Freeman |
| 2007 | CVPR | What makes a good model of natural images? | Yair Weiss, William T. Freeman |
| 2007 | ICCV | A reliable skin mole localization scheme. | Taeg Sang Cho, William T. Freeman, Hensin Tsao |
| 2006 | CVPR | Noise Estimation from a Single Image. | Ce Liu, William T. Freeman, Richard Szeliski, Sing Bing Kang |
| 2006 | CVPR | Using Multiple Segmentations to Discover Objects and their Extent in Image Collections. | Bryan C. Russell, William T. Freeman, Alexei A. Efros, Josef Sivic, Andrew Zisserman |
| 2006 | CVPR | Depth from Familiar Objects: A Hierarchical Model for 3D Scenes. | Erik B. Sudderth, Antonio Torralba, William T. Freeman, Alan S. Willsky |
| 2006 | CVPR | Estimating Intrinsic Component Images using Non-Linear Regression. | Marshall F. Tappen, Edward H. Adelson, William T. Freeman |
| 2005 | ICCV | An Ensemble Prior of Image Structure for Cross-Modal Inference. | Srinivas Ravela, Antonio Torralba, William T. Freeman |
| 2005 | ICCV | Discovering Objects and their Localization in Images. | Josef Sivic, Bryan C. Russell, Alexei A. Efros, Andrew Zisserman, William T. Freeman |
| 2005 | ICCV | Learning Hierarchical Models of Scenes, Objects, and Parts. | Erik B. Sudderth, Antonio Torralba, William T. Freeman, Alan S. Willsky |
| 2004 | CVPR | Visual Hand Tracking Using Nonparametric Belief Propagation. | Erik B. Sudderth, Michael I. Mandel, William T. Freeman, Alan S. Willsky |
| 2004 | CVPR | Efficient Graphical Models for Processing Images. | Marshall F. Tappen, Bryan C. Russell, William T. Freeman |
| 2004 | CVPR | Sharing Features: Efficient Boosting Procedures for Multiclass Object Detection. | Antonio Torralba, Kevin P. Murphy, William T. Freeman |
| 2004 | ICIP | Single-frame text super-resolution: a bayesian approach. | Gerald Dalley, William T. Freeman, Joe Marks |
| 2003 | CVPR | Shape-Time Photography. | William T. Freeman, Hao Zhang |
| 2003 | CVPR | Nonparametric Belief Propagation. | Erik B. Sudderth, Alexander T. Ihler, William T. Freeman, Alan S. Willsky |
| 2003 | CVPR | Properties and Applications of Shape Recipes. | Antonio Torralba, William T. Freeman |
| 2003 | ICCV | Comparison of Graph Cuts with Belief Propagation for Stereo, using Identical MRF Parameters. | Marshall F. Tappen, William T. Freeman |
| 2003 | ICCV | Context-based vision system for place and object recognition. | Antonio Torralba, Kevin P. Murphy, William T. Freeman, Mark A. Rubin |
| 2001 | ICCV | Learning Local Evidence for Shading and Reflectance. | Matt Bell, William T. Freeman |
| 2001 | SIGGRAPH | Image quilting for texture synthesis and transfer. | Alexei A. Efros, William T. Freeman |
| 2001 | SIGCSE | Teaching applied computing without programming: a case-based introductory course for general education. | Joe Marks, William T. Freeman, Henry H. Leitner |
| 2000 | ICMI | Ausio-visual Segmentation and "The Cocktail Party Effect". | Trevor Darrell, John W. Fisher III, Paul A. Viola, William T. Freeman |
| 1999 | ICCV | Learning Low-Level Vision. | William T. Freeman, Egon C. Pasztor |
| 1998 | ECCV | A Factorization Approach to Grouping. | Pietro Perona, William T. Freeman |
| 1998 | SIGGRAPH | Interfaces for humans (panel): natural interaction, tangible data, and beyond. | Michael Harris, Bill Buxton, William T. Freeman, Hiroshi Ishii, Mark Lucente, Michael J. Sinclair |
| 1997 | CVPR | Learning bilinear models for two-factor problems in vision. | William T. Freeman, Joshua B. Tenenbaum |
| 1997 | SIGGRAPH | Design galleries: a general approach to setting parameters for computer graphics and animation. | Joe Marks, Brad Andalman, Paul A. Beardsley, William T. Freeman, Sarah F. Gibson, Jessica K. Hodgins, T. Kang, Brian Mirtich, Hanspeter Pfister, Wheeler Ruml, Kathy Ryall, Joshua E. Seims, Stuart M. Shieber |
| 1995 | ICCV | Bayesian Decision Theory, the Maximum Local Mass Estimate, and Color Constancy. | William T. Freeman, David H. Brainard |
| 1995 | ICIP | The steerable pyramid: a flexible architecture for multi-scale derivative computation. | Eero P. Simoncelli, William T. Freeman |
| 1993 | ICCV | Exploiting the generic view assumption to estimate scene parameters. | William T. Freeman |
| 1991 | SIGGRAPH | Motion without movement. | William T. Freeman, Edward H. Adelson, David J. Heeger |
| 1990 | ICCV | Steerable filters for early vision, image analysis, and wavelet decomposition. | William T. Freeman, Edward H. Adelson |