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Combining Wearable Finger Haptics and Augmented Reality: User Evaluation Using an External Camera and the Microsoft HoloLens.

, , , , , , and . IEEE Robotics Autom. Lett., 3 (4): 4297-4304 (2018)

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Robot team teleoperation for cooperative manipulation using wearable haptics., , , , , and . IROS, page 2556-2563. IEEE, (2017)Cutaneous haptic feedback to ensure the stability of robotic teleoperation systems., , , , and . Int. J. Robotics Res., 34 (14): 1773-1787 (2015)Evaluation of Wearable Haptic Systems for the Fingers in Augmented Reality Applications., , , , , and . IEEE Trans. Haptics, 10 (4): 511-522 (2017)Design and Evaluation of a Wearable Skin Stretch Device for Haptic Guidance., , , , and . IEEE Robotics Autom. Lett., 3 (1): 524-531 (2018)Digital Twin-empowered Model-Mediated Teleoperation using Multimodality Data with Signed Distance Fields., , , , , and . HAPTICS, page 353-359. IEEE, (2024)Investigating the Role of Task Complexity in Virtual Immersive Training (VIT) Systems., and . SIGGRAPH Asia Posters, page 37:1-37:2. ACM, (2019)Two Finger Grasping Simulation with Cutaneous and Kinesthetic Force Feedback., , , , and . EuroHaptics (1), volume 7282 of Lecture Notes in Computer Science, page 373-382. Springer, (2012)Design of a wearable skin stretch cutaneous device for the upper limb., , , and . HAPTICS, page 14-20. IEEE, (2016)PREDICTOR: A Physical emulatoR enabling safEty anD ergonomICs evaluation and Training of physical human-rObot collaboRation., , , , and . Frontiers Neurorobotics, (June 2023)Investigating the effectiveness of immersive VR skill training and its link to physiological arousal., , and . Virtual Real., 27 (2): 1091-1115 (June 2023)