Chemical communication
Related papers: 20
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Synthesis of the pheromone-oriented behaviour of silkworm moths by a mobile robot with moth antennae as pheromone sensors1This paper was presented at the Fifth World Congress on Biosensors, Berlin, Germany, 3–5 June 1998.1
Yoshihiko Kuwana, Sumito Nagasawa, Isao Shimoyama, Ryohei Kanzaki
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An artificial moth: Chemical source localization using a robot based neuronal model of moth optomotor anemotactic search
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Designing pheromone communication in swarm robotics: Group foraging behavior mediated by chemical substance
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Bioinspired Chemical Communication between Synthetic Nanomotors
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Guiding robots’ behaviors using pheromone communication
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Surface curvature guides early construction activity in mound-building termites
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Chemical Plume Tracking. 1. Chemical Information Encoding
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Bi-directional pheromone communication between robots
Anies Hannawati Purnamadjaja, R. Andrew Russell
Citations: 23 • 2009
Bioinspired Chemical Communication between Synthetic Nanomotors
Chuanrui Chen, Xiaocong Chang, Hazhir Teymourian, Doris E. Ramírez‐Herrera, Berta Esteban‐Fernández de Ávila, Xiaolong Lu, Jinxing Li, Sha He, Chengcheng Fang, Yuyan Liang, Fangzhi Mou, Jianguo Guan, Joseph Wang
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Toward Chemical-Trail Following Robots
Pedro Sousa, Lino Marques, Anı́bal T. de Almeida
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Chemical communication between synthetic and natural cells: a possible experimental design.
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Chemical communication between synthetic and natural cells: a possible experimental design.
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Facilitating Interskin Communication in Artificial Polymer Systems through Liquid Transfer
Dongyu Zhang, Dirk J. Broer, Danqing Liu
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Crayfish Robot That Generates Flow Field to Enhance Chemical Reception
Mari Ohashi, Yoshinori Kagawa, Tomomichi Nakatsuka, Hiroshi Ishida
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Evolutionary Conditions for the Emergence of Communication
Sara Mitri, Dario Floreano, Laurent Keller
Citations: 8 • 2009