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Jason Lawrence
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2020 – today
- 2024
- [c17]Jason Lawrence, Ryan S. Overbeck, Todd Prives, Tommy Fortes, Nikki Roth, Brett Newman:
Project Starline: A high-fidelity telepresence system. SIGGRAPH Emerging Technologies 2024: 16 - 2023
- [c16]Jason Lawrence, Ye Pan, Dan B. Goldman, Rachel McDonnell, Carol O'Sullivan, Dave Luebke, Koki Nagano, Michael Zollhöfer, Jason M. Saragih:
State of the Art in Telepresence (Part 1). SIGGRAPH Courses 2023: 17:1-17:132 - [i4]Sanaz Sadat Hosseini, Mona Azarbayjani, Jason Lawrence, Hamed Tabkhi:
Towards Understanding the Benefits and Challenges of Demand Responsive Public Transit- A Case Study in the City of Charlotte, NC. CoRR abs/2304.06467 (2023) - 2022
- [c15]Jason Lawrence:
State of the art in telepresence. SIGGRAPH Courses 2022: 14:1-14:159 - 2021
- [j30]Xuan Luo, Xuaner Cecilia Zhang, Paul Yoo, Ricardo Martin-Brualla, Jason Lawrence, Steven M. Seitz:
Time-travel rephotography. ACM Trans. Graph. 40(6): 213:1-213:12 (2021) - [j29]Jason Lawrence, Dan B. Goldman, Supreeth Achar, Gregory Major Blascovich, Joseph G. Desloge, Tommy Fortes, Eric M. Gomez, Sascha Häberling, Hugues Hoppe, Andy Huibers, Claude Knaus, Brian Kuschak, Ricardo Martin-Brualla, Harris Nover, Andrew Ian Russell, Steven M. Seitz, Kevin Tong:
Project starline: a high-fidelity telepresence system. ACM Trans. Graph. 40(6): 242:1-242:16 (2021) - [c14]Zhihao Xia, Jason Lawrence, Supreeth Achar:
A Dark Flash Normal Camera. ICCV 2021: 2410-2419 - 2020
- [c13]Xuan Luo, Yanmeng Kong, Jason Lawrence, Ricardo Martin-Brualla, Steven M. Seitz:
KeystoneDepth: History in 3D. 3DV 2020: 463-472 - [i3]Zhihao Xia, Jason Lawrence, Supreeth Achar:
A Dark Flash Normal Camera. CoRR abs/2012.06125 (2020) - [i2]Xuan Luo, Xuaner Zhang, Paul Yoo, Ricardo Martin-Brualla, Jason Lawrence, Steven M. Seitz:
Time-Travel Rephotography. CoRR abs/2012.12261 (2020)
2010 – 2019
- 2019
- [i1]Xuan Luo, Yanmeng Kong, Jason Lawrence, Ricardo Martin-Brualla, Steven M. Seitz:
KeystoneDepth: Visualizing History in 3D. CoRR abs/1908.07732 (2019) - 2018
- [j28]Xuan Luo, Jason Lawrence, Steven M. Seitz, Anne-Claire Bourland, Peter Gorman, Jess McIntosh, Asier Marzo, Cheng-Te Chi, Ian Gonsher, Steve Kim, McKenna Cisler, Jonathan Lister, Benjamin Navetta, Peter Haas, Ethan Mok, Horatio Han, Beth Phillips, Maartje de Graaf:
Demo hour. Interactions 25(4): 8-11 (2018) - 2017
- [c12]Xuan Luo, Jason Lawrence, Steven M. Seitz:
Pepper's Cone: An Inexpensive Do-It-Yourself 3D Display. UIST 2017: 623-633 - 2016
- [j27]Li-ming Lou, Paul Nguyen, Jason Lawrence, Connelly Barnes:
Image Perforation: Automatically Accelerating Image Pipelines by Intelligently Skipping Samples. ACM Trans. Graph. 35(5): 153:1-153:14 (2016) - 2015
- [j26]Jonathan Dorn, Connelly Barnes, Jason Lawrence, Westley Weimer:
Towards Automatic Band-Limited Procedural Shaders. Comput. Graph. Forum 34(7): 77-87 (2015) - 2014
- [j25]Adam Brady, Jason Lawrence, Pieter Peers, Westley Weimer:
genBRDF: discovering new analytic BRDFs with genetic programming. ACM Trans. Graph. 33(4): 114:1-114:11 (2014) - [j24]Wenzel Jakob, Milos Hasan, Ling-Qi Yan, Jason Lawrence, Ravi Ramamoorthi, Steve Marschner:
Discrete stochastic microfacet models. ACM Trans. Graph. 33(4): 115:1-115:10 (2014) - [j23]Ling-Qi Yan, Milos Hasan, Wenzel Jakob, Jason Lawrence, Steve Marschner, Ravi Ramamoorthi:
Rendering glints on high-resolution normal-mapped specular surfaces. ACM Trans. Graph. 33(4): 116:1-116:9 (2014) - [r1]Jason Lawrence:
Recovery of Reflectance Properties. Computer Vision, A Reference Guide 2014: 663-669 - 2011
- [j22]Sean Arietta, Jason Lawrence:
Building and Using a Database of One Trillion Natural-Image Patches. IEEE Computer Graphics and Applications 31(1): 9-19 (2011) - [j21]Lei Yang, Pedro V. Sander, Jason Lawrence, Hugues Hoppe:
Antialiasing recovery. ACM Trans. Graph. 30(3): 22:1-22:9 (2011) - [j20]Daniel Lepage, Jason Lawrence:
Material matting. ACM Trans. Graph. 30(6): 144 (2011) - [j19]Lei Yang, Yu-Chiu Tse, Pedro V. Sander, Jason Lawrence, Diego Nehab, Hugues Hoppe, Clara L. Wilkins:
Image-based bidirectional scene reprojection. ACM Trans. Graph. 30(6): 150 (2011) - [j18]Pitchaya Sitthi-amorn, Nicholas Modly, Westley Weimer, Jason Lawrence:
Genetic programming for shader simplification. ACM Trans. Graph. 30(6): 152 (2011) - [j17]Michael Holroyd, Ilya Baran, Jason Lawrence, Wojciech Matusik:
Computing and fabricating multilayer models. ACM Trans. Graph. 30(6): 187 (2011) - [j16]Jason Lawrence, Sean Arietta, Michael M. Kazhdan, Daniel Lepage, Colleen O'Hagan:
A User-Assisted Approach to Visualizing Multidimensional Images. IEEE Trans. Vis. Comput. Graph. 17(10): 1487-1498 (2011) - [c11]Michael Holroyd, Jason Lawrence:
An analysis of using high-frequency sinusoidal illumination to measure the 3D shape of translucent objects. CVPR 2011: 2985-2991 - 2010
- [j15]Pitchaya Sitthi-amorn, Fabiano Romeiro, Todd E. Zickler, Jason Lawrence:
Interactive Editing of Lighting and Materials using a Bivariate BRDF Representation. Comput. Graph. Forum 29(4): 1461-1468 (2010) - [j14]Michael Holroyd, Jason Lawrence, Todd E. Zickler:
A coaxial optical scanner for synchronous acquisition of 3D geometry and surface reflectance. ACM Trans. Graph. 29(4): 99:1-99:12 (2010)
2000 – 2009
- 2009
- [j13]Tim Weyrich, Jason Lawrence, Hendrik P. A. Lensch, Szymon Rusinkiewicz, Todd E. Zickler:
Principles of Appearance Acquisition and Representation. Found. Trends Comput. Graph. Vis. 4(2): 75-191 (2009) - [j12]Craig Donner, Jason Lawrence, Ravi Ramamoorthi, Toshiya Hachisuka, Henrik Wann Jensen, Shree K. Nayar:
An empirical BSSRDF model. ACM Trans. Graph. 28(3): 30 (2009) - [j11]Wojciech Matusik, Boris Ajdin, Jinwei Gu, Jason Lawrence, Hendrik P. A. Lensch, Fabio Pellacini, Szymon Rusinkiewicz:
Printing spatially-varying reflectance. ACM Trans. Graph. 28(5): 128 (2009) - [j10]Lei Yang, Diego F. Nehab, Pedro V. Sander, Pitchaya Sitthi-amorn, Jason Lawrence, Hugues Hoppe:
Amortized supersampling. ACM Trans. Graph. 28(5): 135 (2009) - 2008
- [j9]Lei Yang, Pedro V. Sander, Jason Lawrence:
Geometry-Aware Framebuffer Level of Detail. Comput. Graph. Forum 27(4): 1183-1188 (2008) - [j8]Pitchaya Sitthi-amorn, Jason Lawrence, Lei Yang, Pedro V. Sander, Diego Nehab, Jiahe Xi:
Automated reprojection-based pixel shader optimization. ACM Trans. Graph. 27(5): 127 (2008) - [j7]Michael Holroyd, Jason Lawrence, Greg Humphreys, Todd E. Zickler:
A photometric approach for estimating normals and tangents. ACM Trans. Graph. 27(5): 133 (2008) - [c10]Pitchaya Sitthi-amorn, Jason Lawrence, Lei Yang, Pedro V. Sander, Diego Nehab:
An Improved Shading Cache for Modern GPUs. Graphics Hardware 2008: 95-101 - [c9]Tim Weyrich, Jason Lawrence, Hendrik P. A. Lensch, Szymon Rusinkiewicz, Todd E. Zickler:
Principles of appearance acquisition and representation. SIGGRAPH Classes 2008: 80:1-80:119 - 2007
- [j6]Fabio Pellacini, Jason Lawrence:
AppWand: editing measured materials using appearance-driven optimization. ACM Trans. Graph. 26(3): 54 (2007) - [c8]Diego F. Nehab, Pedro V. Sander, Jason Lawrence, Natalya Tatarchuk, John Isidoro:
Accelerating real-time shading with reverse reprojection caching. Graphics Hardware 2007: 25-35 - [c7]Richard Peter Weistroffer, Kristen R. Walcott, Greg Humphreys, Jason Lawrence:
Efficient Basis Decomposition for Scattered Reflectance Data. Rendering Techniques 2007: 207-218 - 2006
- [j5]Jason Lawrence, Aner Ben-Artzi, Christopher DeCoro, Wojciech Matusik, Hanspeter Pfister, Ravi Ramamoorthi, Szymon Rusinkiewicz:
Inverse shade trees for non-parametric material representation and editing. ACM Trans. Graph. 25(3): 735-745 (2006) - [j4]Pieter Peers, Karl vom Berge, Wojciech Matusik, Ravi Ramamoorthi, Jason Lawrence, Szymon Rusinkiewicz, Philip Dutré:
A compact factored representation of heterogeneous subsurface scattering. ACM Trans. Graph. 25(3): 746-753 (2006) - 2005
- [c6]Erika Biediger, Jason Lawrence, William Singhose:
Improving trajectory tracking for systems with unobservable modes using command generation. ACC 2005: 513-518 - [c5]Trân-Quân Luong, Ankush Seth, Allison W. Klein, Jason Lawrence:
Isoluminant color picking for non-photorealistic rendering. Graphics Interface 2005: 233-240 - [c4]Jason Lawrence, Szymon Rusinkiewicz, Ravi Ramamoorthi:
Adaptive Numerical Cumulative Distribution Functions for Efficient Importance Sampling. Rendering Techniques 2005: 11-20 - 2004
- [j3]Jason Lawrence, Thomas A. Funkhouser:
A painting interface for interactive surface deformations. Graph. Model. 66(6): 418-438 (2004) - [j2]Jason Lawrence, Szymon Rusinkiewicz, Ravi Ramamoorthi:
Efficient BRDF importance sampling using a factored representation. ACM Trans. Graph. 23(3): 496-505 (2004) - [c3]Keith Hekman, William Singhose, Jason Lawrence:
Input shaping with Coulomb friction compensation on a solder cell machine. ACC 2004: 728-733 - 2003
- [j1]Michael Kallay, Jason Lawrence:
Improving the Two-Pass Resampling Algorithm. J. Graphics, GPU, & Game Tools 8(2): 31-39 (2003) - [c2]Jason Lawrence, Thomas A. Funkhouser:
A Painting Interface for Interactive Surface Deformations. PG 2003: 141- - 2002
- [c1]Jason Lawrence, William Singhose, Keith Hekman:
An analytical solution for a zero vibration input shaper for systems with Coulomb friction. ACC 2002: 4068-4073
Coauthor Index
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last updated on 2024-08-12 00:07 CEST by the dblp team
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