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Calibrated depth and color cameras for accurate 3D interaction in a stereoscopic augmented reality environment.

, , , , and . J. Vis. Commun. Image Represent., 25 (1): 227-237 (2014)

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Integrating High Fidelity Eye, Head and World Tracking in a Wearable Device., , , , and . ETRA Adjunct, page 9:1-9:4. ACM, (2021)High-resolution eye tracking using scanning laser ophthalmoscopy., , , , and . ETRA, page 58:1-58:3. ACM, (2019)Vergence control learning through real V1 disparity tuning curves., , and . NER, page 332-335. IEEE, (2015)Solving Parallax Error for 3D Eye Tracking., , and . ETRA Adjunct, page 8:1-8:4. ACM, (2021)Assessment of stereoscopic depth perception in augmented reality environments based on low-cost technologies., , , , , , and . APGV, page 111. ACM, (2011)A Stereoscopic Augmented Reality System for the Veridical Perception of the 3D Scene Layout., , , , , and . VISAPP (2), page 15-23. SciTePress, (2012)Learning Eye Vergence Control from a Distributed Disparity Representation., , , and . Int. J. Neural Syst., 20 (4): 267-278 (2010)Learning a Compositional Hierarchy of Disparity Descriptors for 3D Orientation Estimation in an Active Fixation Setting., , , and . ICANN (2), volume 10614 of Lecture Notes in Computer Science, page 192-199. Springer, (2017)A neuromorphic control module for real-time vergence eye movements on the iCub robot head., , , , and . Humanoids, page 543-550. IEEE, (2011)A neural model for binocular vergence control without explicit calculation of disparity., , , , and . ESANN, (2009)