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Interoceptive robustness through environment-mediated morphological development.

, , , and . GECCO, page 109-116. ACM, (2018)

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Interoceptive robustness through environment-mediated morphological development., , , and . GECCO, page 109-116. ACM, (2018)The Surprising Creativity of Digital Evolution: A Collection of Anecdotes from the Evolutionary Computation and Artificial Life Research Communities., , , , , , , , , and 43 other author(s). Artif. Life, 26 (2): 274-306 (2020)Evolutionary Developmental Soft Robotics As a Framework to Study Intelligence and Adaptive Behavior in Animals and Plants., , , , and . Front. Robotics and AI, (2017)Scalable Co-Optimization of Morphology and Control in Embodied Machines., , , and . CoRR, (2017)The Surprising Creativity of Digital Evolution: A Collection of Anecdotes from the Evolutionary Computation and Artificial Life Research Communities., , , , , , , , , and 43 other author(s). CoRR, (2018)Topological evolution for embodied cellular automata., and . Theor. Comput. Sci., (2016)Hands-free Evolution of 3D-printable Objects via Eye Tracking, , , and . CoRR, (2013)Evolving Soft Robots in Tight Spaces., , and . GECCO, page 935-942. ACM, (2015)Unshackling evolution: evolving soft robots with multiple materials and a powerful generative encoding., , , and . GECCO, page 167-174. ACM, (2013)A minimal developmental model can increase evolvability in soft robots., , , and . GECCO, page 131-138. ACM, (2017)