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Redundant Neural Vision Systems - Competing for Collision Recognition Roles.

, and . IEEE Trans. Autonomous Mental Development, 5 (2): 173-186 (2013)

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Visual motion pattern extraction and fusion for collision detection in complex dynamic scenes., and . Computer Vision and Image Understanding, 104 (1): 48-60 (2006)How accurate need sensory coding be for behaviour? Experiments using a mobile robot., , and . Neurocomputing, (2001)Collision detection in complex dynamic scenes using an LGMD-based visual neural network with feature enhancement., and . IEEE Trans. Neural Networks, 17 (3): 705-716 (2006)A Visual Neural Network for Robust Collision Perception in Vehicle Driving Scenarios., , , , , and . AIAI, volume 559 of IFIP Advances in Information and Communication Technology, page 67-79. Springer, (2019)Using a Mobile Robot to Study Locust Collision Avoidance Responses., , and . Int. J. Neural Syst., 9 (5): 405-410 (1999)A bio-inspired visual collision detection mechanism for cars: Optimisation of a model of a locust neuron to a novel environment., , , , and . Neurocomputing, 69 (13-15): 1591-1598 (2006)Postsynaptic organisations of directional selective visual neural networks for collision detection., and . Neurocomputing, (2013)Redundant Neural Vision Systems - Competing for Collision Recognition Roles., and . IEEE Trans. Autonomous Mental Development, 5 (2): 173-186 (2013)A Collision Detection System for a Mobile Robot Inspired by the Locust Visual System., and . ICRA, page 3832-3837. IEEE, (2005)Collision avoidance using a model of the locust LGMD neuron., , and . Robotics and Autonomous Systems, 30 (1-2): 17-38 (2000)