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Transition Cells and Neural Fields for Navigation and Planning.

, , , and . IWINAC (1), volume 3561 of Lecture Notes in Computer Science, page 346-355. Springer, (2005)

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Transition Cells for Navigation and Planning in an Unknown Environment., , , , and . SAB, volume 4095 of Lecture Notes in Computer Science, page 286-297. Springer, (2006)Cognitive map plasticity and imitation strategies to extend the performance of a MAS., , , and . IAS, page 326-333. IOS Press, (2006)Learning and motivational couplings promote smarter behaviors of an animat in an unknown world., , and . Robotics Auton. Syst., 38 (3-4): 149-156 (2002)Effect of low level imitation strategy on an autonomous Multi-Robot System using on-line learning for cognitive map building., , , , , and . ROBIO, page 1452-1457. IEEE, (2012)Adaptation capability of cognitive map improves behaviors of social robots., , , , and . ICDL-EPIROB, page 1-6. IEEE, (2012)Learning by Imitation for the Improvement of the Individual and the Social Behaviors of Self-organized Autonomous Agents., , , , and . ICSI (2), volume 7929 of Lecture Notes in Computer Science, page 44-52. Springer, (2013)Cognitive map plasticity and imitation strategies to improve individual and social behaviors of autonomous agents., , , , and . Paladyn J. Behav. Robotics, 1 (1): 25-36 (2010)Transition Cells and Neural Fields for Navigation and Planning., , , and . IWINAC (1), volume 3561 of Lecture Notes in Computer Science, page 346-355. Springer, (2005)