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Employing the secondary task technique for measuring MRP pilots' cognitive load.

, , and . NordiCHI, page 706-710. ACM, (2018)

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Mobile Remote Presence Enhanced with Contactless Object Manipulation: An Exploratory Study., , , and . CHI Extended Abstracts, page 2690-2697. ACM, (2017)Probing the Design Space of a Telepresence Robot Gesture Arm with Low Fidelity Prototypes., and . HRI, page 352-360. ACM, (2017)Tabula: a web-based coordination tool integrating task structure overviews and minimalist task workspaces., and . Int. J. Web Eng. Technol., 8 (3): 250-263 (2013)Performance, Power, and Place: User Experience of Contactless Object Manipulation in Robotic Telepresence., , , and . NordiCHI, page 61:1-61:12. ACM, (2020)Employing the secondary task technique for measuring MRP pilots' cognitive load., , and . NordiCHI, page 706-710. ACM, (2018)Evaluating Input Devices for Robotic Telepresence.. ECCE, page 24:1-24:8. ACM, (2021)Exploring the Relationship Between Physical Presence, User Experience, and Task Parameters in Robotic Telepresence., , and . ECCE, page 25:1-25:5. ACM, (2021)A semantic scale for evaluating the UX of a MRP system., and . ECCE, page 59-60. ACM, (2017)Non-technical users' first encounters with a robotic telepresence technology: An empirical study of office workers., , and . Paladyn J. Behav. Robotics, 9 (1): 307-322 (2018)Focus Group Foci: Employing Participants' HCI and Application Domain Expertise in Interaction Design., and . WorldCIST (1), volume 353 of Advances in Intelligent Systems and Computing, page 1057-1063. Springer, (2015)