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Learning and communication via imitation: an autonomous robot perspective.

, , , , and . IEEE Trans. Systems, Man, and Cybernetics, Part A, 31 (5): 431-442 (2001)

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Taking inspiration from the Hippocampus can help solving robotics problems., , and . ESANN, page 357-362. (1999)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)Sequence Learning Using the Neural Coding., , and . IWANN (1), volume 2686 of Lecture Notes in Computer Science, page 198-205. Springer, (2003)The hippocampo-cortical loop: Spatio-temporal learning and goal-oriented planning in navigation., , , , , and . Neural Networks, (2013)From Perception-Action Loops to Imitation Processes: A Bottom-Up Approach of Learning by Imitation., , , and . Applied Artificial Intelligence, 12 (7-8): 701-727 (1998)A Hierarchy of Associations in Hippocampo-Cortical Systems: Cognitive Maps and Navigation Strategies., , , , and . Neural Computation, 17 (6): 1339-1384 (2005)Robots as Models of the Brain: What Can We Learn from Modelling Rat Navigation and Infant Imitation Games?, , , , , and . AIME, volume 2780 of Lecture Notes in Computer Science, page 377-386. Springer, (2003)The visual homing problem: An example of robotics/biology cross fertilization., , , , and . Robotics and Autonomous Systems, 30 (1-2): 155-180 (2000)Visual navigation in an open environment without map., , , , and . IROS, page 545-550. IEEE, (1997)Why and How Hippocampal Transition Cells Can Be Used in Reinforcement Learning., , , and . SAB, volume 6226 of Lecture Notes in Computer Science, page 359-369. Springer, (2010)