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A neuromorphic control module for real-time vergence eye movements on the iCub robot head.

, , , , and . Humanoids, page 543-550. IEEE, (2011)

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Lattice Models for Context-Driven Regularization in Motion Perception., , and . WIRN, volume 2859 of Lecture Notes in Computer Science, page 35-42. Springer, (2003)Detection of 3D position of eyes through a consumer RGB-D camera for stereoscopic mixed reality environments., , , , , , and . IC3D, page 1-8. IEEE, (2014)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)Compact Early Vision Signal Analyzers in Neuromorphic Technology., , and . VISIGRAPP (4: VISAPP), page 530-537. SCITEPRESS, (2020)Learning Eye Vergence Control from a Distributed Disparity Representation., , , and . Int. J. Neural Syst., 20 (4): 267-278 (2010)A phase-based stereo vision system-on-a-chip., , , , and . Biosyst., 87 (2-3): 314-321 (2007)A Fast Joint Bioinspired Algorithm for Optic Flow and Two-Dimensional Disparity Estimation., , and . ICVS, volume 5815 of Lecture Notes in Computer Science, page 184-193. Springer, (2009)An Early Cognitive Approach to Visual Motion Analysis., and . AI*IA, volume 2829 of Lecture Notes in Computer Science, page 385-397. Springer, (2003)Vergence control learning through real V1 disparity tuning curves., , and . NER, page 332-335. IEEE, (2015)