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Influencing Human Escape Maneuvers With Perceptual Cues in the Presence of a Visual Task.

, , , and . IEEE Trans. Hum. Mach. Syst., 51 (6): 715-724 (2021)

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Using parallel stiffness to achieve improved locomotive efficiency with the Sandia STEPPR robot., , , , , , , , , and 4 other author(s). ICRA, page 835-841. IEEE, (2015)A ball-shaped underwater robot for direct inspection of nuclear reactors and other water-filled infrastructure., , , and . ICRA, page 3415-3422. IEEE, (2013)A compact, maneuverable, underwater robot for direct inspection of nuclear power piping systems., , , and . ICRA, page 2818-2823. IEEE, (2012)Mag-Foot: A steel bridge inspection robot., and . IROS, page 1691-1696. IEEE, (2009)Maneuverability of a robotic tuna with compliant body., , and . ICRA, page 683-688. IEEE, (2008)Design for precision multi-directional maneuverability: Egg-shaped underwater robots for infrastructure inspection., , , and . ICRA, page 2950-2956. IEEE, (2014)Enhancing Physical Human Evasion of Moving Threats Using Tactile Cues., , , and . IEEE Trans. Haptics, 13 (1): 32-37 (2020)Influencing Human Escape Maneuvers With Perceptual Cues in the Presence of a Visual Task., , , and . IEEE Trans. Hum. Mach. Syst., 51 (6): 715-724 (2021)Modeling and Controller Design for Enhanced Hollow-Fiber Bioreactor Performance., , and . IEEE Control. Syst. Lett., (2022)Utilizing Reinforcement Learning to Continuously Improve a Primitive-Based Motion Planner., , , , and . J. Aerosp. Inf. Syst., 19 (7): 468-479 (July 2022)