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Tracking moving vehicles using an advanced grid-based Bayesian filter approach.

, , and . Intelligent Vehicles Symposium, page 466-472. IEEE, (2011)

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A biologically-inspired vision architecture for resource-constrained intelligent vehicles., , and . Computer Vision and Image Understanding, 114 (5): 548-563 (2010)Combining Sensory and Symbolic Data for Manipulative Gesture Recognition., , and . ICPR (3), page 930-933. IEEE Computer Society, (2004)"BIRON, let me show you something": evaluating the interaction with a robot companion., , , , and . SMC (3), page 2827-2834. IEEE, (2004)Incorporating environmental knowledge into Bayesian filtering using attractor functions., , and . Intelligent Vehicles Symposium, page 476-481. IEEE, (2012)Tracking moving vehicles using an advanced grid-based Bayesian filter approach., , and . Intelligent Vehicles Symposium, page 466-472. IEEE, (2011)Visual ego-vehicle lane assignment using Spatial Ray features., , and . Intelligent Vehicles Symposium, page 1101-1106. IEEE, (2013)Visio-spatial road boundary detection for unmarked urban and rural roads., and . Intelligent Vehicles Symposium, page 1251-1256. IEEE, (2014)Spatial ray features for real-time ego-lane extraction., , and . ITSC, page 288-293. IEEE, (2012)Biased Competition in Visual Processing Hierarchies: A Learning Approach Using Multiple Cues., , , and . Cognitive Computation, 3 (1): 146-166 (2011)Human-style interaction with a robot for cooperative learning of scene objects., , , , and . ICMI, page 151-158. ACM, (2005)