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We present a method for reconstructing 3D shape of arbitrary Lambertian objects based on measurements by miniature, energy-efficient, low-cost single-photon cameras.
The correction for photonpile-up’in the measurement of radiative lifetimes
PB Coates · 1968
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Illumination for computer generated pictures
Phong Bui-Tuong · 1975
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Illumination for computer generated pictures
Phong Bui-Tuong · 1975
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A perspective on range finding techniques for computer vision
Ray A Jarvis · 1983
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Marching cubes: A high resolution 3d surface construction algorithm
William E Lorensen and Harvey E Cline · 1987
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Generalization of lambert’s reflectance model
Michael Oren and Shree K Nayar · 1994
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Robust Monte Carlo methods for light transport simulation
Eric Veach · 1998
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The ball-pivoting algorithm for surface reconstruction
F. Bernardini, J. Mittleman, H. Rushmeier, C. Silva, and G. Taubin · 1999
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A theory of shape by space carving
Kiriakos N Kutulakos and Steven M Seitz · 2000
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A comparison and evaluation of multi-view stereo reconstruction algorithms
Steven M Seitz, Brian Curless, James Diebel, Daniel Scharstein, and Richard Szeliski · 2006
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Poisson surface reconstruction
Michael Kazhdan, Matthew Bolitho, and Hugues Hoppe · 2006
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Principles and features of single-photon avalanche diode arrays
Franco Zappa, Simone Tisa, Alberto Tosi, and Sergio Cova · 2007
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Imu-based localization and slip estimation for skid-steered mobile robots
Jingang Yi, Junjie Zhang, Dezhen Song, and Suhada Jayasuriya · 2007
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Multiview photometric stereo
Carlos Hernandez, George Vogiatzis, and Roberto Cipolla · 2008
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Structured-light 3D surface imaging: a tutorial
Jason Geng · 2011
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Time-of-flight cameras: principles, methods and applications
Miles Hansard, Seungkyu Lee, Ouk Choi, and Radu Patrice Horaud · 2012
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Recovering three-dimensional shape around a corner using ultrafast time-of-flight imaging
Andreas Velten, Thomas Willwacher, Otkrist Gupta, Ashok Veeraraghavan, Moungi G Bawendi, and Ramesh Raskar · 2012
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A survey of photometric stereo techniques
Jens Ackermann and Michael Goesele · 2015
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Adam: A method for stochastic optimization
Diederik P Kingma and Jimmy Ba · 2015
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Orb-slam: a versatile and accurate monocular slam system
Raul Mur-Artal, Jose Maria Martinez Montiel, and Juan D Tardos · 2015
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A computational model of a single-photon avalanche diode sensor for transient imaging
Quercus Hernandez, Diego Gutierrez, and Adrian Jarabo · 2017
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The geometry of first-returning photons for non-line-of-sight imaging
Chia-Yin Tsai, Kiriakos N Kutulakos, Srinivasa G Narasimhan, and Aswin C Sankaranarayanan · 2017
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Sub-picosecond photon-efficient 3D imaging using single-photon sensors
Felix Heide, Steven Diamond, David B Lindell, and Gordon Wetzstein · 2018
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Confocal non-line-of-sight imaging based on the light-cone transform
Matthew O’Toole, David B Lindell, and Gordon Wetzstein · 2018
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Signal processing based pile-up compensation for gated single-photon avalanche diodes
Adithya K Pediredla, Aswin C Sankaranarayanan, Mauro Buttafava, Alberto Tosi, and Ashok Veeraraghavan · 2018
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Photon-flooded single-photon 3D cameras
Anant Gupta, Atul Ingle, Andreas Velten, and Mohit Gupta · 2019
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Wave-based non-line-of-sight imaging using fast fk migration
David B Lindell, Gordon Wetzstein, and Matthew O’Toole · 2019
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DiscoBand: Multiview depth-sensing smartwatch strap for hand, body and environment tracking
Nathan Devrio and Chris Harrison · 2022
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3D scene inference from transient histograms
Sacha Jungerman, Atul Ingle, Yin Li, and Mohit Gupta · 2022
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Physics to the rescue: Deep non-line-of-sight reconstruction for high-speed imaging
Fangzhou Mu, Sicheng Mo, Jiayong Peng, Xiaochun Liu, Ji Hyun Nam, Siddeshwar Raghavan, Andreas Velten, and Yin Li · 2022
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Instant neural graphics primitives with a multiresolution hash encoding
Thomas Müller, Alex Evans, Christoph Schied, and Alexander Keller · 2022
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iSDF: Real-time neural signed distance fields for robot perception
Joseph Ortiz, Alexander Clegg, Jing Dong, Edgar Sucar, David Novotny, Michael Zollhoefer, and Mustafa Mukadam · 2022
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Shumian Xin, Sotiris Nousias, Kiriakos N Kutulakos, Aswin C Sankaranarayanan, Srinivasa G Narasimhan, and Ioannis Gkioulekas · 2019
Cited alongside, same era.
Non-line-of-sight imaging
Daniele Faccio, Andreas Velten, and Gordon Wetzstein · 2020
Cited alongside, same era.
Implicit geometric regularization for learning shapes
Amos Gropp, Lior Yariv, Niv Haim, Matan Atzmon, and Yaron Lipman · 2020
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FingerTrak: Continuous 3d hand pose tracking by deep learning hand silhouettes captured by miniature thermal cameras on wrist
Fang Hu, Peng He, Songlin Xu, Yin Li, and Cheng Zhang · 2020
Cited alongside, same era.
Real-time multispectral fluorescence lifetime imaging using single photon avalanche diode arrays
João L Lagarto, Federica Villa, Simone Tisa, Franco Zappa, Vladislav Shcheslavskiy, Francesco S Pavone, and Riccardo Cicchi · 2020
Cited alongside, same era.
Nerf: Representing scenes as neural radiance fields for view synthesis
Ben Mildenhall, Pratul P Srinivasan, Matthew Tancik, Jonathan T Barron, Ravi Ramamoorthi, and Ren Ng · 2020
Cited alongside, same era.
Disambiguating monocular depth estimation with a single transient
Mark Nishimura, David B. Lindell, Christopher Metzler, and Gordon Wetzstein · 2020
Cited alongside, same era.
Alice Ruget, Max Tyler, Germán Mora Martín, Stirling Scholes, Feng Zhu, Istvan Gyongy, Brent Hearn, Steve McLaughlin, Abderrahim Halimi, and Jonathan Leach · 2022
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Computer vision: algorithms and applications
Richard Szeliski · 2022
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PS-NeRF: Neural inverse rendering for multi-view photometric stereo
Wenqi Yang, Guanying Chen, Chaofeng Chen, Zhenfang Chen, and Kwan-Yee K. Wong · 2022
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DELTAR: Depth estimation from a light-weight tof sensor and rgb image
Li Yijin, Liu Xinyang, Dong Wenqi, Zhou han, Bao Hujun, Zhang Guofeng, Zhang Yinda, and Cui Zhaopeng · 2022
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isdf: Real-time neural signed distance fields for robot perception
Joseph Ortiz, Alexander Clegg, Jing Dong, Edgar Sucar, David Novotny, Michael Zollhoefer, and Mustafa Mukadam · 2022
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Plastic classification using optical parameter features measured with the tmf8801 direct time-of-flight depth sensor
Cienna N Becker and Lucas J Koerner · 2023
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NLOS-NeuS: Non-line-of-sight neural implicit surface
Yuki Fujimura, Takahiro Kushida, Takuya Funatomi, and Yasuhiro Mukaigawa · 2023
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Neural LiDAR fields for novel view synthesis
Shengyu Huang, Zan Gojcic, Zian Wang, Francis Williams, Yoni Kasten, Sanja Fidler, Konrad Schindler, and Or Litany · 2023
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Multi-view photometric stereo revisited
Berk Kaya, Suryansh Kumar, Carlos Oliveira, Vittorio Ferrari, and Luc Van Gool · 2023
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CASPI: collaborative photon processing for active single-photon imaging
Jongho Lee, Atul Ingle, Jenu V Chacko, Kevin W Eliceiri, and Mohit Gupta · 2023
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Multi-modal neural radiance field for monocular dense slam with a light-weight tof sensor
Xinyang Liu, Yijin Li, Yanbin Teng, Hujun Bao, Guofeng Zhang, Yinda Zhang, and Zhaopeng Cui · 2023
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Transient neural radiance fields for LiDAR view synthesis and 3D reconstruction
Anagh Malik, Parsa Mirdehghan, Sotiris Nousias, Kiriakos N. Kutulakos, and David B. Lindell · 2023
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Unlocking the performance of proximity sensors by utilizing transient histograms
Carter Sifferman, Yeping Wang, Mohit Gupta, and Michael Gleicher · 2023
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Multi-modal neural radiance field for monocular dense slam with a light-weight tof sensor
Liu Xinyang, Li Yijin, Teng Yanbin, Bao Hujun, Zhang Guofeng, Zhang Yinda, and Cui Zhaopeng · 2023
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MVPSNet: Fast generalizable multi-view photometric stereo
Dongxu Zhao, Daniel Lichy, Pierre-Nicolas Perrin, Jan-Michael Frahm, and Soumyadip Sengupta · 2023
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Neural LiDAR fields for novel view synthesis
Shengyu Huang, Zan Gojcic, Zian Wang, Francis Williams, Yoni Kasten, Sanja Fidler, Konrad Schindler, and Or Litany · 2023
Later among the works it cites.