![]() | ![]() |
| 2012 | ||
|---|---|---|
| 68 | Forrester Cole, Aleksey Golovinskiy, Alex Limpaecher, Heather Stoddart Barros, Adam Finkelstein, Thomas A. Funkhouser, Szymon Rusinkiewicz: Where do people draw lines? Commun. ACM 55(1): 107-115 (2012) | |
| 2011 | ||
| 67 | Antonio García Castañeda, Benedict J. Brown, Szymon Rusinkiewicz, Thomas A. Funkhouser, Tim Weyrich: Global Consistency in the Automatic Assembly of Fragmented Artefacts. VAST 2011: 73-80 | |
| 66 | Vladimir G. Kim, Yaron Lipman, Thomas A. Funkhouser: Blended intrinsic maps. ACM Trans. Graph. 30(4): 79 (2011) | |
| 65 | D. Boyer, Yaron Lipman, E. St. Clair, J. Puente, Thomas A. Funkhouser, B. Patel, J. Jernvall, Ingrid Daubechies: Algorithms to automatically quantify the geometric similarity of anatomical surfaces CoRR abs/1110.3649: (2011) | |
| 64 | Thomas A. Funkhouser, Hijung Shin, Corey Toler-Franklin, Antonio García Castañeda, Benedict J. Brown, David P. Dobkin, Szymon Rusinkiewicz, Tim Weyrich: Learning how to match fresco fragments. JOCCH 4(2): 7 (2011) | |
| 2010 | ||
| 63 | Hijung Shin, Christos Doumas, Thomas A. Funkhouser, Szymon Rusinkiewicz, Kenneth Steiglitz, Andreas Vlachopoulos, Tim Weyrich: Analyzing Fracture Patterns in TheranWall Paintings. VAST 2010: 71-78 | |
| 62 | Yaron Lipman, Raif M. Rustamov, Thomas A. Funkhouser: Biharmonic distance. ACM Trans. Graph. 29(3): (2010) | |
| 61 | Yaron Lipman, Xiaobai Chen, Ingrid Daubechies, Thomas A. Funkhouser: Symmetry factored embedding and distance. ACM Trans. Graph. 29(4): (2010) | |
| 60 | Corey Toler-Franklin, Benedict J. Brown, Tim Weyrich, Thomas A. Funkhouser, Szymon Rusinkiewicz: Multi-feature matching of fresco fragments. ACM Trans. Graph. 29(6): 185 (2010) | |
| 59 | Jian Sun, Xiaobai Chen, Thomas A. Funkhouser: Fuzzy Geodesics and Consistent Sparse Correspondences For: eformable Shapes. Comput. Graph. Forum 29(5): 1535-1544 (2010) | |
| 58 | Vladimir G. Kim, Yaron Lipman, Xiaobai Chen, Thomas A. Funkhouser: Möbius Transformations For Global Intrinsic Symmetry Analysis. Comput. Graph. Forum 29(5): 1689-1700 (2010) | |
| 2009 | ||
| 57 | Aleksey Golovinskiy, Vladimir G. Kim, Thomas A. Funkhouser: Shape-based recognition of 3D point clouds in urban environments. ICCV 2009: 2154-2161 | |
| 56 | Aleksey Golovinskiy, Joshua Podolak, Thomas A. Funkhouser: Symmetry-Aware Mesh Processing. IMA Conference on the Mathematics of Surfaces 2009: 170-188 | |
| 55 | Xiaobai Chen, Aleksey Golovinskiy, Thomas A. Funkhouser: A benchmark for 3D mesh segmentation. ACM Trans. Graph. 28(3): (2009) | |
| 54 | Forrester Cole, Kevin Sanik, Douglas DeCarlo, Adam Finkelstein, Thomas A. Funkhouser, Szymon Rusinkiewicz, Manish Singh: How well do line drawings depict shape? ACM Trans. Graph. 28(3): (2009) | |
| 53 | Yaron Lipman, Thomas A. Funkhouser: Möbius voting for surface correspondence. ACM Trans. Graph. 28(3): (2009) | |
| 52 | Raif M. Rustamov, Yaron Lipman, Thomas A. Funkhouser: Interior Distance Using Barycentric Coordinates. Comput. Graph. Forum 28(5): 1279-1288 (2009) | |
| 51 | Aleksey Golovinskiy, Thomas A. Funkhouser: Consistent segmentation of 3D models. Computers & Graphics 33(3): 262-269 (2009) | |
| 50 | John A. Capra, Roman A. Laskowski, Janet M. Thornton, Mona Singh, Thomas A. Funkhouser: Predicting Protein Ligand Binding Sites by Combining Evolutionary Sequence Conservation and 3D Structure. PLoS Computational Biology 5(12): (2009) | |
| 2008 | ||
| 49 | Jeehyung Lee, Thomas A. Funkhouser: Sketch-Based Search and Composition of 3D Models. SBM 2008: 97-104 | |
| 48 | Forrester Cole, Aleksey Golovinskiy, Alex Limpaecher, Heather Stoddart Barros, Adam Finkelstein, Thomas A. Funkhouser, Szymon Rusinkiewicz: Where do people draw lines? ACM Trans. Graph. 27(3): (2008) | |
| 47 | Aleksey Golovinskiy, Thomas A. Funkhouser: Randomized cuts for 3D mesh analysis. ACM Trans. Graph. 27(5): 145 (2008) | |
| 2007 | ||
| 46 | Philip Shilane, Thomas A. Funkhouser: Distinctive regions of 3D surfaces. ACM Trans. Graph. 26(2): (2007) | |
| 2006 | ||
| 45 | Philip Shilane, Thomas A. Funkhouser: Selecting Distinctive 3D Shape Descriptors for Similarity Retrieval. SMI 2006: 18 | |
| 44 | Thomas A. Funkhouser, Philip Shilane: Partial matching of 3D shapes with priority-driven search. Symposium on Geometry Processing 2006: 131-142 | |
| 43 | Aleksey Golovinskiy, Wojciech Matusik, Hanspeter Pfister, Szymon Rusinkiewicz, Thomas A. Funkhouser: A statistical model for synthesis of detailed facial geometry. ACM Trans. Graph. 25(3): 1025-1034 (2006) | |
| 42 | Joshua Podolak, Philip Shilane, Aleksey Golovinskiy, Szymon Rusinkiewicz, Thomas A. Funkhouser: A planar-reflective symmetry transform for 3D shapes. ACM Trans. Graph. 25(3): 549-559 (2006) | |
| 41 | Ayellet Tal, Thomas A. Funkhouser, Ariel Shamir: Editorial. Computers & Graphics 30(6): 891 (2006) | |
| 2005 | ||
| 40 | Thomas A. Funkhouser, Michael M. Kazhdan, Patrick Min, Philip Shilane: Shape-based retrieval and analysis of 3d models. Commun. ACM 48(6): 58-64 (2005) | |
| 39 | Grant Wallace, Otto J. Anshus, Peng Bi, Han Chen, Yuqun Chen, Douglas W. Clark, Perry R. Cook, Adam Finkelstein, Thomas A. Funkhouser, Anoop Gupta, Matthew A. Hibbs, Kai Li, Zhiyan Liu, Rudrajit Samanta, Rahul Sukthankar, Olga G. Troyanskaya: Tools and Applications for Large-Scale Display Walls. IEEE Computer Graphics and Applications 25(4): 24-33 (2005) | |
| 2004 | ||
| 38 | Patrick Min, Michael M. Kazhdan, Thomas A. Funkhouser: A Comparison of Text and Shape Matching for Retrieval of Online 3D Models. ECDL 2004: 209-220 | |
| 37 | Philip Shilane, Patrick Min, Michael M. Kazhdan, Thomas A. Funkhouser: The Princeton Shape Benchmark. SMI 2004: 167-178 | |
| 36 | Philip Shilane, Patrick Min, Michael M. Kazhdan, Thomas A. Funkhouser: The Princeton Shape Benchmark (Figures 1 and 2). SMI 2004: 388 | |
| 35 | Michael M. Kazhdan, Thomas A. Funkhouser, Szymon Rusinkiewicz: Symmetry Descriptors and 3D Shape Matching. Symposium on Geometry Processing 2004: 117-126 | |
| 34 | Michael M. Kazhdan, Thomas A. Funkhouser, Szymon Rusinkiewicz: Shape matching and anisotropy. ACM Trans. Graph. 23(3): 623-629 (2004) | |
| 33 | Thomas A. Funkhouser, Michael M. Kazhdan, Philip Shilane, Patrick Min, William Kiefer, Ayellet Tal, Szymon Rusinkiewicz, David P. Dobkin: Modeling by example. ACM Trans. Graph. 23(3): 652-663 (2004) | |
| 32 | Jason Lawrence, Thomas A. Funkhouser: A painting interface for interactive surface deformations. Graphical Models 66(6): 418-438 (2004) | |
| 2003 | ||
| 31 | Jason Lawrence, Thomas A. Funkhouser: A Painting Interface for Interactive Surface Deformations. Pacific Conference on Computer Graphics and Applications 2003: 141- | |
| 30 | Daniel G. Aliaga, Dimah Yanovsky, Thomas A. Funkhouser, Ingrid Carlbom: Interactive image-based rendering using feature globalization. SI3D 2003: 163-170 | |
| 29 | Michael M. Kazhdan, Thomas A. Funkhouser, Szymon Rusinkiewicz: Rotation Invariant Spherical Harmonic Representation of 3D Shape Descriptors. Symposium on Geometry Processing 2003: 156-165 | |
| 28 | Patrick Min, John A. Halderman, Michael M. Kazhdan, Thomas A. Funkhouser: Early experiences with a 3D model search engine. Web3D 2003: 7-18 | |
| 27 | Thomas A. Funkhouser, Patrick Min, Michael M. Kazhdan, Joyce Chen, J. Alex Halderman, David P. Dobkin, David Pokrass Jacobs: A search engine for 3D models. ACM Trans. Graph. 22(1): 83-105 (2003) | |
| 26 | Michael M. Kazhdan, Bernard Chazelle, David P. Dobkin, Thomas A. Funkhouser, Szymon Rusinkiewicz: A Reflective Symmetry Descriptor for 3D Models. Algorithmica 38(1): 201-225 (2003) | |
| 25 | Daniel G. Aliaga, Thomas A. Funkhouser, Dimah Yanovsky, Ingrid Carlbom: Sea of Images: A Dense Sampling Approach for Rendering Large Indoor Environments. IEEE Computer Graphics and Applications 23(6): 22-30 (2003) | |
| 2002 | ||
| 24 | Michael M. Kazhdan, Bernard Chazelle, David P. Dobkin, Adam Finkelstein, Thomas A. Funkhouser: A Reflective Symmetry Descriptor. ECCV (2) 2002: 642-656 | |
| 23 | Daniel G. Aliaga, Thomas A. Funkhouser, Dimah Yanovsky, Ingrid Carlbom: Sea of Images. IEEE Visualization 2002: 331-338 | |
| 22 | Robert Osada, Thomas A. Funkhouser, Bernard Chazelle, David P. Dobkin: Shape distributions. ACM Trans. Graph. 21(4): 807-832 (2002) | |
| 21 | Nicolas Tsingos, Ingrid Carlbom, Gary Elko, Robert Kubli, Thomas A. Funkhouser: Validating Acoustical Simulations in Bell Labs Box. IEEE Computer Graphics and Applications 22(4): 28-37 (2002) | |
| 2001 | ||
| 20 | Rudrajit Samanta, Thomas A. Funkhouser, Kai Li: Parallel rendering with k-way replication. IEEE Symposium on Parallel and Large-Data Visualization and Graphics 2001: 75-84 | |
| 19 | Nicolas Tsingos, Thomas A. Funkhouser, Addy Ngan, Ingrid Carlbom: Modeling acoustics in virtual environments using the uniform theory of diffraction. SIGGRAPH 2001: 545-552 | |
| 18 | Robert Osada, Thomas A. Funkhouser, Bernard Chazelle, David P. Dobkin: Matching 3D Models with Shape Distributions. Shape Modeling International 2001: 154-166 | |
| 17 | Han Chen, Yuqun Chen, Adam Finkelstein, Thomas A. Funkhouser, Kai Li, Zhiyan Liu, Rudrajit Samanta, Grant Wallace: Data distribution strategies for high-resolution displays. Computers & Graphics 25(5): 811-818 (2001) | |
| 2000 | ||
| 16 | Allison Klein, Wilmot Li, Michael M. Kazhdan, Wagner Toledo Corrêa, Adam Finkelstein, Thomas A. Funkhouser: Non-photorealistic virtual environments. SIGGRAPH 2000: 527-534 | |
| 15 | Patrick Min, Thomas A. Funkhouser: Priority-Driven Acoustic Modeling for Virtual Environments. Comput. Graph. Forum 19(3): 179-188 (2000) | |
| 14 | Thomas A. Funkhouser, Kai Li: Guest Editors' Introduction: Large-Format Displays. IEEE Computer Graphics and Applications 20(4): 20-21 (2000) | |
| 13 | Kai Li, Han Chen, Yuqun Chen, Douglas W. Clark, Perry R. Cook, Stefanos N. Damianakis, Georg Essl, Adam Finkelstein, Thomas A. Funkhouser, Timothy C. Housel, Allison Klein, Zhiyan Liu, Emil Praun, Rudrajit Samanta, Ben Shedd, Jaswinder Pal Singh, George Tzanetakis, Jiannan Zheng: Building and Using A Scalable Display Wall System. IEEE Computer Graphics and Applications 20(4): 29-37 (2000) | |
| 1999 | ||
| 12 | Thomas A. Funkhouser, Patrick Min, Ingrid Carlbom: Real-Time Acoustic Modeling for Distributed Virtual Environments. SIGGRAPH 1999: 365-374 | |
| 11 | Thomas A. Funkhouser: A visibility algorithm for hybrid geometry- and image-based modeling and rendering. Computers & Graphics 23(5): 719-728 (1999) | |
| 1998 | ||
| 10 | Thomas A. Funkhouser, Ingrid Carlbom, Gary Elko, Gopal Sarma Pingali, Mohan Sondhi, Jim West: A Beam Tracing Approach to Acoustic Modeling for Interactive Virtual Environments. SIGGRAPH 1998: 21-32 | |
| 1997 | ||
| 9 | T. M. Murali, Thomas A. Funkhouser: Consistent Solid and Boundary Representations from Arbitrary Polygonal Data. SI3D 1997: 155-162, 196 | |
| 1996 | ||
| 8 | Thomas A. Funkhouser: Database Management for Interactive Display of Large Architectural Models. Graphics Interface 1996: 1-8 | |
| 7 | Thomas A. Funkhouser: Coarse-Grained Parallelism for Hierarchical Radiosity Using Group Iterative Methods. SIGGRAPH 1996: 343-352 | |
| 6 | Alexandros Biliris, Thomas A. Funkhouser, William O'Connell, Euthimios Panagos: BeSS: Storage Support for Interactive Visualization Systems. SIGMOD Conference 1996: 556 | |
| 5 | Thomas A. Funkhouser, Seth J. Teller, Delnaz Khorramabadi: The UC Berkeley System for Interactive Visualization of Large Architectural Models. Presence 5(1): 13-44 (1996) | |
| 1995 | ||
| 4 | Thomas A. Funkhouser: RING: A Client-Server System for Multi-User Virtual Environments. SI3D 1995: 85-92, 209 | |
| 1994 | ||
| 3 | Seth J. Teller, Celeste Fowler, Thomas A. Funkhouser, Pat Hanrahan: Partitioning and ordering large radiosity computations. SIGGRAPH 1994: 443-450 | |
| 1993 | ||
| 2 | Thomas A. Funkhouser, Carlo H. Séquin: Adaptive display algorithm for interactive frame rates during visualization of complex virtual environments. SIGGRAPH 1993: 247-254 | |
| 1992 | ||
| 1 | Thomas A. Funkhouser, Carlo H. Séquin, Seth J. Teller: Management of Large Amounts of Data in Interactive Building Walkthroughs. SI3D 1992: 11-20 | |
Colors in the list of coauthors
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