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Learning by Stimulation Avoidance as a Primary Principle of Spiking Neural Networks Dynamics.

, , , and . ECAL, page 175-182. MIT Press, (2015)

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Reactive, Proactive, and Inductive Agents: An Evolutionary Path for Biological and Artificial Spiking Networks., , and . Frontiers Comput. Neurosci., (2019)Studying Embodied Cognition in the Android Alter., , and . ALIFE, page 53. MIT Press, (2021)Emergence of Sense-Making Behavior by the Stimulus Avoidance Principle: Experiments on a Robot Behavior Controlled by Cultured Neuronal Cells., , , , , , , and . ECAL, page 373-380. MIT Press, (2015)Learning by Stimulation Avoidance as a Primary Principle of Spiking Neural Networks Dynamics., , , and . ECAL, page 175-182. MIT Press, (2015)Neural Autopoiesis: Organizing Self-Boundary by Stimulus Avoidance in Biological and Artificial Neural Networks., , , , , , , and . CoRR, (2020)Neural Autopoiesis: Organizing Self-Boundaries by Stimulus Avoidance in Biological and Artificial Neural Networks., , , , , , , and . Artif. Life, 26 (1): 130-151 (2020)Predictive Coding as Stimulus Avoidance in Spiking Neural Networks., , and . SSCI, page 271-277. IEEE, (2019)A new design principle for an autonomous robot., , , , , and . ECAL, page 490-466. MIT Press, (2017)Autonomous Regulation of Self and Non-Self by Stimulation Avoidance in Embodied Neural Networks., , , , , , , and . ALIFE, page 163-170. MIT Press, (2018)Morphological computation on two dimensional self-assembly system., and . SIGGRAPH Posters, page 25. ACM, (2013)