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A soft-bodied fluid-driven amoeboid robot inspired by plasmodium of true slime mold.

, , , , and . IROS, page 2401-2406. IEEE, (2010)

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Fluid-Filled Soft-Bodied Amoeboid Robot Inspired by Plasmodium of True Slime Mold., , , , and . Adv. Robotics, 26 (7): 693-707 (2012)A True-Slime-Mold-Inspired Fluid-Filled Robot Exhibiting Versatile Behavior., , and . Living Machines, volume 7375 of Lecture Notes in Computer Science, page 262-273. Springer, (2012)Design of Frictional 2D-Anisotropy Surface for Wriggle Locomotion of Printable Soft-Bodied Robots., , and . ICRA, page 6779-6785. IEEE, (2018)Caterpillar-inspired crawling robot on a stick using active-release and passive-grip elastic legs., and . RoboSoft, page 461-466. IEEE, (2018)Development of 3D Printed Structure that Visualizes Bending and Compression Deformations for Soft-bodied Robots., , and . RoboSoft, page 155-162. IEEE, (2021)Locomotion diversity in an underwater soft-robot inspired by the polyclad flatworm., , , , and . IROS, page 2083. IEEE, (2013)Electroantennography Measurement by Printed Electronics Electrode., , , , , , and . SII, page 844-847. IEEE, (2020)Caterpillar-Inspired Crawling Robot Using Both Compression and Bending Deformations., , and . IEEE Robotics Autom. Lett., 4 (2): 670-676 (2019)Self-organizing cell tactile perception which depends on mechanical stimulus history., , , , , , , , and . Adv. Robotics, 33 (5): 232-242 (2019)Diverse Behaviors of a Single-Motor-Driven Soft-Bodied Robot Utilizing the Resonant Vibration of 2D Repetitive Slit Patterns., , and . IEEE Robotics Autom. Lett., 7 (2): 992-999 (2022)