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Design of a Biologically Inspired Parallel Robot for Foods Chewing.

, , and . IEEE Trans. Industrial Electronics, 55 (2): 832-841 (2008)

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CPG-based control of a swallowing robot., , and . IJCAT, 50 (1/2): 137-147 (2014)Kinematics and Experiments of a Life-Sized Masticatory Robot for Characterizing Food Texture., , , , , and . IEEE Trans. Industrial Electronics, 55 (5): 2121-2132 (2008)A linkage chewing machine for food texture analysis., , , , and . IJISTA, 8 (1/2/3/4): 303-318 (2010)Design of a Position and Force Control Scheme for 6rss Parallel Robots and its Application in Chewing Robots., , , and . I. J. Humanoid Robotics, 7 (3): 477-489 (2010)Choosing new ways to chew: a robotic model of the human masticatory system for reproducing chewing behaviors., , and . IEEE Robot. Automat. Mag., 12 (2): 90-100 (2005)Mastication Robots - Biological Inspiration to Implementation, and . Studies in Computational Intelligence Springer, (2010)A robotic human masticatory system: kinematics simulations., , and . IJISTA, 1 (1/2): 3-17 (2005)Thermal and haptic interface design: Adding sensory feedback to VR/AR., , and . I2MTC, page 1-6. IEEE, (2018)Design of a Biologically Inspired Parallel Robot for Foods Chewing., , and . IEEE Trans. Industrial Electronics, 55 (2): 832-841 (2008)Object-oriented knowledge representation and discovery of human chewing behaviours., , , , , and . Eng. Appl. of AI, 20 (7): 1000-1012 (2007)