TR2004-099
Exploiting Depth Discontinuities for Vision-Based Fingerspelling Recognition
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- "Exploiting Depth Discontinuities for Vision-Based Fingerspelling Recognition", IEEE Workshop on Real-Time Vision for Human-Computer Interaction (RTV4HCI), June 2004.BibTeX TR2004-099 PDF
- @inproceedings{Feris2004jun,
- author = {Feris, R. and Turk, M. and Raskar, R. and Tan, K.-H. and Ohashi, G.},
- title = {Exploiting Depth Discontinuities for Vision-Based Fingerspelling Recognition},
- booktitle = {IEEE Workshop on Real-Time Vision for Human-Computer Interaction (RTV4HCI)},
- year = 2004,
- month = jun,
- url = {https://www.merl.com/publications/TR2004-099}
- }
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- "Exploiting Depth Discontinuities for Vision-Based Fingerspelling Recognition", IEEE Workshop on Real-Time Vision for Human-Computer Interaction (RTV4HCI), June 2004.
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Research Area:
Abstract:
We present a novel method for automatic fingerspelling recognition which is able to discriminate complex hand configurations with high amounts of finger occlusions. Such a scenario, while common in most fingerspelling alphabets, presents a challenge for vision methods due to the low intensity variation along important shape edges in the hand image. Out approach is based on a simple and cheap modification of the capture setup: a multi-flash camea is used with flashes strategically positioned to cast shadows along depth discontinuities in the scene, allowing efficient and accurate hand shape extraction. We then use a shift and scale invariant shape descriptor for fingerspelling recognition, demonstrating great improvement over methods that rely on features acquired by traditional edge detection and segmentation algorithms.
Related News & Events
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NEWS RTV4HCI 2004: publication by Ramesh Raskar and others Date: June 27, 2004
Where: IEEE Workshop on Real-Time Vision for Human-Computer Interaction (RTV4HCI)
Research Area: Computer VisionBrief- The paper "Exploiting Depth Discontinuities for Vision-Based Fingerspelling Recognition" by Feris, R., Turk, M., Raskar, R., Tan, K.-H. and Ohashi, G. was presented at the IEEE Workshop on Real-Time Vision for Human-Computer Interaction (RTV4HCI).