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A Design Tool for Therapeutic Social-Physical Human-Robot Interactions.

, and . HRI, page 727-729. IEEE, (2019)

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A high fidelity ungrounded torque feedback device: The iTorqU 2.0., , , , and . WHC, page 261-266. IEEE Computer Society, (2009)High frequency acceleration feedback significantly increases the realism of haptically rendered textured surfaces., , , and . HAPTICS, page 141-148. IEEE Computer Society, (2010)Dynamic simulation of tool-mediated texture interaction., and . World Haptics, page 307-312. IEEE, (2013)Haptic Display of Contact Location., , , and . HAPTICS, page 40-47. IEEE Computer Society, (2004)Internal Array Electrodes Improve the Spatial Resolution of Soft Tactile Sensors Based on Electrical Resistance Tomography., , , and . ICRA, page 5411-5417. IEEE, (2019)Proton 2: Increasing the sensitivity and portability of a visuo-haptic surface interaction recorder., , , and . ICRA, page 439-445. IEEE, (2017)Improving Telerobotic Touch via High-frequency Acceleration Matching., and . ICRA, page 3893-3898. IEEE, (2006)A Design Tool for Therapeutic Social-Physical Human-Robot Interactions., and . HRI, page 727-729. IEEE, (2019)Corrigendum to "Robotic learning of haptic adjectives through physical interaction" [Robot. Auton. Syst. 63 (P3) (2015) 279-292]., , , , , , , , and . Robotics and Autonomous Systems, (2016)Effects of Grip-Force, Contact, and Acceleration Feedback on a Teleoperated Pick-and-Place Task., , , and . IEEE Trans. Haptics, 10 (1): 40-53 (2017)