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A Planning Map for Mobile Robots: Speed Control and Paths Finding in a Changing Environment.

, , , , and . EWLR, volume 1812 of Lecture Notes in Computer Science, page 103-119. Springer, (1999)

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A Model of the Visual Attention to Speed up Image Analysis., , and . ICIP (1), page 246-250. (1998)Moving the frontiers between robotics and biology., and . Robotics and Autonomous Systems, (1995)Living in a partially structured environment: How to bypass the limitations of classical reinforcement techniques., , , and . Robotics and Autonomous Systems, 20 (2-4): 225-250 (1997)Comparing Multi-agent System and Mixed-Integer Programming Approaches on a Simple Optimization Problem., , , , and . IC-AI, page 977-981. CSREA Press, (2010)"Synchrony" as a way to choose an interacting partner., , and . ICDL-EPIROB, page 1-6. IEEE, (2012)Perception: Insights from the sensori-motor approach., , , , and . EUVIP, page 261-268. IEEE, (2010)Frustration as a generical regulatory mechanism for motivated navigation., and . IROS, page 4704-4709. IEEE, (2010)Emotional modulation of peripersonal space as a way to represent reachable and comfort areas., , and . IROS, page 353-359. IEEE, (2015)Cognitive map plasticity and imitation strategies to extend the performance of a MAS., , , and . IAS, page 326-333. IOS Press, (2006)Interactive Teaching for Vision-Based Mobile Robots: A Sensory-Motor Approach., and . IEEE Trans. Systems, Man, and Cybernetics, Part A, 40 (1): 13-28 (2010)