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Compensating for Fingertip Size to Render Tactile Cues More Accurately.

, , , and . IEEE Trans. Haptics, 13 (1): 144-151 (2020)

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Vibrotactile Display: Perception, Technology, and Applications., and . Proc. IEEE, 101 (9): 2093-2104 (2013)Endowing a NAO Robot With Practical Social-Touch Perception., , , , and . Frontiers Robotics AI, (2022)Objective and Subjective Assessment of Algorithms for Reducing Three-Axis Vibrations to One-Axis Vibrations., and . WHC, page 467-472. IEEE, (2019)Haptic display of realistic tool contact via dynamically compensated control of a dedicated actuator., and . IROS, page 3170-3177. IEEE, (2009)Implementation of a 6-DOF Parallel Continuum Manipulator for Delivering Fingertip Tactile Cues., and . IEEE Trans. Haptics, 12 (3): 295-306 (2019)Modeling and Rendering Realistic Textures from Unconstrained Tool-Surface Interactions., , and . IEEE Trans. Haptics, 7 (3): 381-393 (2014)Recreating the feel of the human chest in a CPR manikin via programmable pneumatic damping., , , and . HAPTICS, page 37-44. IEEE, (2012)Methods for robotic tool-mediated haptic surface recognition., and . HAPTICS, page 49-56. IEEE, (2014)A wearable device for controlling a robot gripper with fingertip contact, pressure, vibrotactile, and grip force feedback., , and . HAPTICS, page 19-25. IEEE, (2014)Design of body-grounded tactile actuators for playback of human physical contact., and . World Haptics, page 563-568. IEEE Computer Society, (2011)