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Constructing living buildings: a review of relevant technologies for a novel application of biohybrid robotics

, , , , , , , , , , , , and . Journal of The Royal Society Interface, 16 (156): 20190238 (2019)
DOI: 10.1098/rsif.2019.0238

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Trophallaxis within a robotic swarm: bio-inspired communication among robots in a swarm., and . Auton. Robots, 25 (1-2): 171-188 (2008)Cooperation of two different swarms controlled by BEECLUST algorithm., , , and . ECAL, page 1124-1125. MIT Press, (2013)Re-embodiment of Honeybee Aggregation Behavior in an Artificial Micro-Robotic System., , , and . Adaptive Behaviour, 17 (3): 237-259 (2009)How to Engineer Robotic Organisms and Swarms? - Bio-Inspiration, Bio-Mimicry, and Artificial Evolution in Embodied Self-Organized Systems.. Bio-Inspired Self-Organizing Robotic Systems, volume 355 of Studies in Computational Intelligence, (2011)Evolving Collective Behaviors With Diverse But Predictable Sensor States., , and . ECAL, page 174. MIT Press, (2015)A Minimalist Flocking Algorithm for Swarm Robots., , and . ECAL (2), volume 5778 of Lecture Notes in Computer Science, page 375-382. Springer, (2009)Embodiment of Honeybee's Thermotaxis in a Mobile Robot Swarm., , , , and . ECAL (2), volume 5778 of Lecture Notes in Computer Science, page 69-76. Springer, (2009)How Two Cooperating Robot Swarms Are Affected by Two Conflictive Aggregation Spots., , , and . ECAL (2), volume 5778 of Lecture Notes in Computer Science, page 367-374. Springer, (2009)The "Dance or Work" Problem: Why Do not all Honeybees Dance with Maximum Intensity., , and . CEEMAS, volume 3690 of Lecture Notes in Computer Science, page 246-255. Springer, (2005)Evolving Controllers for Programmable Robots to Influence Non-programmable Lifeforms: A Casy Study., and . EvoApplications, volume 9028 of Lecture Notes in Computer Science, page 831-841. Springer, (2015)