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Gaze contingency in turn-taking for human robot interaction: Advantages and drawbacks.

, , , , , and . RO-MAN, page 369-374. IEEE, (2015)

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Speed and Speech Impact on the Usage of a Hand Sanitizer Robot., , , , , and . HRI (Companion), page 382-386. ACM, (2021)Speech Impact in a Usability Test - A Case Study of the KUBO Robot., , , , and . HRI, page 723-726. IEEE / ACM, (2022)Towards augmented reality navigation using affordable technology., , , , , , and . AutomotiveUI, page 238-241. ACM, (2013)Classification of Visual Interest based on Gaze and Facial Features for Human-robot Interaction., , and . VISIGRAPP (2: HUCAPP), page 198-204. SCITEPRESS, (2021)Glancing at personal navigation devices can affect driving: experimental results and design implications., , , , and . AutomotiveUI, page 129-136. ACM, (2009)A Mobile Social Hand Disinfection Robot for Use in Hospitals., , , and . ICSR (2), volume 13818 of Lecture Notes in Computer Science, page 348-358. Springer, (2022)Multi-modal Proactive Approaching of Humans for Human-Robot Cooperative Tasks., , , and . RO-MAN, page 323-329. IEEE, (2021)Excuse Me, May I Say Something? A Robot Facilitating Q&A for Lectures., , , , , , and . IROS, page 5546. IEEE, (2018)Improving Teacher-Student Communication During Lectures Using a Robot and an Online Messaging/Voting System., , , , , and . RO-MAN, page 1-7. IEEE, (2018)A Drink-Serving Mobile Social Robot Selects who to Interact with Using Gaze., , , , and . HRI (Companion), page 384-385. ACM, (2020)