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An Intuitive Wearable Concept for Robotic Control.

, , , , , and . HCI (3), volume 10273 of Lecture Notes in Computer Science, page 492-503. Springer, (2017)

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Smart Interaction Device for Advanced Human Robotic Interface (SID)., , and . HCI (4), volume 10904 of Lecture Notes in Computer Science, page 306-317. Springer, (2018)Development of Tactile and Haptic Systems for U.S. Infantry Navigation and Communication., , and . HCI (11), volume 6771 of Lecture Notes in Computer Science, page 399-407. Springer, (2011)Countermeasures Against Stress: Dynamic Cognitive Induction., , , , and . HCI (1), page 691-695. Lawrence Erlbaum, (1999)Using rough sets to determine construct importance in a dynamic HCI environment., , , and . CHI Extended Abstracts, page 147-148. ACM, (2000)A Tool for the Accumulation and Evaluation of Multimodal Research., , , and . IEEE Trans. Syst. Man Cybern. Part C, 38 (6): 850-855 (2008)Assessment of Wearable Tactile System: Perception, Learning, and Recall., , , and . HCI (16), volume 10916 of Lecture Notes in Computer Science, page 67-77. Springer, (2018)Development of Dual Tactor Capability for a Soldier Multisensory Navigation and Communication System., , , , , and . HCI (14), volume 8017 of Lecture Notes in Computer Science, page 46-55. Springer, (2013)The benefits of multimodal information: a meta-analysis comparing visual and visual-tactile feedback., , , , , , , and . ICMI, page 333-338. ACM, (2006)Comparing the effects of visual-auditory and visual-tactile feedback on user performance: a meta-analysis., , , , , , , and . ICMI, page 108-117. ACM, (2006)Squad-Level Soldier-Robot Dynamics: Exploring Future Concepts Involving Intelligent Autonomous Robots., , and . HCI (10), volume 10280 of Lecture Notes in Computer Science, page 426-436. Springer, (2017)