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A comprehensive table of word-level video sign language datasets

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Word Level / Isolated Video Sign Langauge Dataset

A comprehensive table of video sign language datasets encompassing various languages, types, and features:

Datasets Language Word-Classes Type Videos Signers Availibility Dataset link
SignBD-Word [1] Bangla 200 RGB, Pose 6000 16 Public Link to Dataset
Purdue RVL-SLLLASL [2] American 104 RGB 2576 14 Public Link to Dataset
RWTH-BOSTON-50 [3] American 50 RGB 483 3 Public Link to Dataset
WLASL [4] American 2000 RGB 21083 119 Public Link to Dataset
MS-ASL [5] American 1000 RGB 9764 222 Public Link to Dataset
LSA64 [6] Argentinian 64 RGB, hand segmentation 3200 10 Public Link to Dataset
DEVISIGN [7] Chinese 2000 RGB, depth 24000 8 Public Link to Dataset
Isolated SLR500 [8] Chinese 500 RGB, depth, pose 25000 50 Public Link to Dataset
DGS Kinect [9] German 40 RGB, depth 3000 15 Public Link to Dataset
GSL [10] Greek 20 RGB 840 6 Public Link to Dataset
INCLUDE [11] Indian 263 RGB 4287 7 Public Link to Dataset
PSL kinect 330 [12] Polish 30 RGB, depth 300 - Public Link to Dataset
PSL ToF [12] Polish 84 RGB, depth 1680 - Public Link to Dataset
AUTSL [13] Turkish 226 RGB 36302 43 Public Link to Dataset
NMFs-CSL [14] Chinese 1067 RGB 32010 - Public Link to Dataset
Slovo [15] Russian 1000 RGB 20000 194 Public Link to Dataset
K-RSL [16] Kazakh-Russian 600 RGB, pose 28250 10 Public Link to Dataset

References

[1] A. Sams, A. H. Akash and S. M. M. Rahman, "SignBD-Word: Video-Based Bangla Word-Level Sign Language and Pose Translation," 2023 14th International Conference on Computing Communication and Networking Technologies (ICCCNT), Delhi, India, 2023, pp. 1-7, doi: 10.1109/ICCCNT56998.2023.10306914.

[2] R. Wilbur and A. Kak, "Purdue RVL-SLLL American Sign Language Database. School of Electrical and Computer Engineering Technical Report," TR-0612, Purdue University, W. Lafayette, IN 47906, Tech. Rep., 2006.

[3] M. Zahedi, P. Dreuw, D. Rybach, T. Deselaers, and H. Ney, "Continuous sign language recognition-approaches from speech recognition and available data resources," in Second Workshop on the Representation and Processing of Sign Languages: Lexicographic Matters and Didactic Scenarios, Genes, Itali, 2006, pp. 21-24.

[4] D. Li, C. Rodriguez, X. Yu, and H. Li, "Word-level deep sign language recognition from video: A new large-scale dataset and methods comparison," in Proceedings of the IEEE Winter Conference on Applications of Computer Vision, 2020, pp. 1459-1469.

[5] H. R. V. Joze and O. Koller, "MS-ASL: A large-scale data set and benchmark for understanding american sign language," arXiv preprint arXiv:1812.01053, 2018.

[6] F. Ronchetti, F. Quiroga, C. A. Estrebou, L. C. Lanzarini, and A. Rosete, "LSA64: an Argentinian sign language dataset," in Proceedings of the XXII Congreso Argentino de Ciencias de la Computación, Argentina, 2016 , pp. 794-803.

[7] X. Chai, H. Wang, and X. Chen, "The devisign large vocabulary of chinese sign language database and baseline evaluations," in Technical report VIPL-TR-14-SLR-001. Key Lab of Intelligent Information Processing of Chinese Academy of Sciences (CAS). China: Institute of Computing Technology, 2014.

[8] J. Zhang, W. Zhou, C. Xie, J. Pu, and H. Li, "Chinese sign language recognition with adaptive HMM," in Proceedings of the IEEE International Conference on Multimedia and Expo, Seattle, WA, USA, 2016, pp. 1-6.

[9] E.-J. Ong, H. Cooper, N. Pugeault, and R. Bowden, "Sign language recognition using sequential pattern trees," in Proceedings of the IEEE Computer Society Conference on Computer Vision and Pattern Recognition, Providence, Rhode Island, USA, 2012.

[10] E. Efthimiou and S.-E. Fotinea, "GSLC: creation and annotation of a Greek sign language corpus for HCI," in Proceedings of the International Conference on Universal Access in Human-Computer Interaction, Beijing, China, 2007, pp. 657-666.

[11] A. Sridhar, R. G. Ganesan, P. Kumar, and M. Khapra, "INCLUDE: A large scale dataset for Indian sign language recognition," in Proceedings of the International Conference on Multimedia, Seattle, United States, 2020, pp. 1366-1375.

[12] M. Oszust and M. Wysocki, "Polish sign language words recognition with kinect," in Proceedings of the 6th International Conference on Human System Interactions, Gdańsk, Sopot, Poland, 2013, pp. 219-226.

[13] O. M. Sincan and H. Y. Keles, "AUTSL: A large scale multi-modal turkish sign language dataset and baseline methods," IEEE Access, vol. 8, pp. $181340-181355,2020$.