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A Development of Dynamic Deforming Algorithms for 3D Shape Modeling with Generation of Interactive Force Sensation.

, , and . VRAIS, page 505-511. IEEE Computer Society, (1993)

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The Effect of Neuromodulations on the Adaptability of Evolved Neurocontrollers., , , and . ECAL, volume 2159 of Lecture Notes in Computer Science, page 292-295. Springer, (2001)Minimalist CPG Model for Inter- and Intra-limb Coordination in Bipedal Locomotion., , , , and . IAS (2), volume 194 of Advances in Intelligent Systems and Computing, page 493-502. Springer, (2012)Brainless Quasi-quadruped Robot Resembling Spinal Reflex and Force-Velocity Relationship of Muscles., , and . Living Machines, volume 11556 of Lecture Notes in Computer Science, page 329-333. Springer, (2019)Evolving neural controllers that elicit nontrivial behaviors using a developmental process., , , and . Artif. Life Robotics, 3 (2): 106-111 (1999)Immunoid: An Immunological Approach to Decentralized Behavoir Arbitration of Autonomous Mobile Robots., , , and . PPSN, volume 1141 of Lecture Notes in Computer Science, page 666-675. Springer, (1996)Decentralized Control Scheme That Enables Scaffold-Based Peristaltic Locomotion., , , and . Living Machines, volume 7375 of Lecture Notes in Computer Science, page 361-362. Springer, (2012)One-dimensional reaction-diffusion model for intra- and inter- biofilm oscillatory dynamics., , , and . ALIFE, page 712-714. MIT Press, (2020)Taming large degrees of freedom., , , , and . ICRA, page 3787-3792. IEEE, (2010)Increasing evolvability of a locomotion controller using a passive-dynamic-walking embodiment., , and . IROS, page 2581-2586. IEEE, (2002)Listen to body's message: Quadruped robot that fully exploits physical interaction between legs., , and . IROS, page 1950-1955. IEEE, (2012)