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Behavior Design of a Robot in a Public Place for Enriching Child-Robot Interaction in a Group., , and . HRI (Companion), page 155-156. ACM, (2018)Social Acceptance of Interactive Robots in Japan: Comparison of Children and Adults and Analysis of People's Opinion., , and . HRI (Companion), page 157-158. ACM, (2018)Body Information Acquisition System of Redundant Musculo-Skeletal Humanoid., , , , and . ISER, volume 21 of Springer Tracts in Advanced Robotics, page 249-258. Springer, (2004)An autonomous reactive system for humanoids equipped with very many actuators and sensors., , , , , , and . Humanoids, page 422-427. IEEE, (2007)A reinforceable-muscle flexible-spine humanoid "Kenji"., , , and . IROS, page 4143-4148. IEEE, (2005)Realization of large joint movement while standing by a musculoskeletal humanoid using its spine and legs coordinately., , , , , and . IROS, page 205-210. IEEE, (2008)Satoru Tokutsu, Kunihiko Yamamoto, Yohei Kakiuchi, Toshiaki Maki, Shunnichi Nozawa, Ryohei Ueda, Ikuo Mizuuchi: Enhanced Mother Environment with Humanoid Specialization in IRT Robot Systems., , , , , , , , , and 7 other author(s). ISRR, volume 70 of Springer Tracts in Advanced Robotics, page 379-396. Springer, (2009)Muscle-tendon complex control by "Tension controlled Muscle" and "Non-linear Spring Ligament" for real world musculoskeletal body simulator Kenshiro., , , , , , and . BioRob, page 875-880. IEEE, (2014)Motion generation for human-robot collaborative pick and place based on non-obstructing strategy., , , and . ROBIO, page 20-25. IEEE, (2011)Design of humanoid body trunk with "multiple spine structure" and "planar-muscle-driven" system for achievement of humanlike powerful and lithe motion., , , , , , , and . ROBIO, page 2217-2222. IEEE, (2011)