Title: SHREC'20: Shape correspondence with non-isometric deformations - Sketchfab (data)
Access Rights: Data can be made available only subject to certain contractual terms
Cardiff University Dataset Creators
Dataset Details
Publisher: Cardiff University
Date (year) of data becoming publicly available: 2020
Coverage start date: 18/02/2020
Coverage end date: 03/03/2020
Data format: .obj, .txt, .html
Software Required: MeshLab, CloudCompare, OpenFlipper
Estimated total storage size of dataset: Less than 100 megabytes
Number of Files In Dataset: 6
DOI: 10.17035/d.2020.0112373427
DescriptionWe have curated a dataset of 3D scans of objects from existing data repositories. All scans are of quadruped mammals. Shapes were primarily created using a variety of capturing techniques. Ground-truth corresdpondences were then established by three experts. Shapes (e.g., a giraffe and a dog) exhibit substantial non-isometric deformation, which prove challenging for existing shape matching methods. The dataset consists of both partial and watertight (i.e., full) meshes. Additional complexities caused by scanning, such as geometric and topological change, are also present. Pairs of shapes are assigned to test-sets of gradually increasing non-isometry.
This dataset has been split into two parts to help make the licences clearer. This part contains the following shapes: bison; dog; elephant_a; giraffe_a; hippo; leopard; pig; rhino.
Licence applicable to relevant part of data:
Name in dataset | Original name | Author | License | Hyperlink |
Bison | Bison | Misterdevious | CC BY-NC-SA 4.0 | link |
Dog | Plastic Toy Dog -RAWscan | Spogna | CC BY-NC 4.0 | link |
Elephant_a | Plastic Elephant | Spogna | CC BY-NC 4.0 | link |
Giraffe_a | Giraffe Scanned by EinScan-S 3D Scanner | Shinning 3D | CC BY 4.0 | link |
hippo | Bronze hippo | Alban | CC BY 4.0 | link |
leopard | Cheetah | Moshe Caine | CC BY 4.0 | link |
pig | Pig | Lindy | CC BY 4.0 | link |
rhino | Model 56B - Southern White Rhino - Mesh Only | DigitalLife3D | CC BY 4.0 | link |
Keywords
3D Shape Retrieval, Shape correspondence