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Emoji to Robomoji: Exploring Affective Telepresence Through Haru.

, , , , , and . ICSR, volume 12483 of Lecture Notes in Computer Science, page 652-663. Springer, (2020)

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Deep JSLC: A Multimodal Corpus Collection for Data-driven Generation of Japanese Sign Language Expressions., and . LREC, European Language Resources Association (ELRA), (2018)Learning Motion Disfluencies for Automatic Sign Language Segmentation., and . ICASSP, page 7360-7364. IEEE, (2019)Data-driven development of Virtual Sign Language Communication Agents., , and . RO-MAN, page 370-377. IEEE, (2018)Personalization of Human-Robot Gestural Communication through Voice Interaction Grounding., and . IROS, page 846-853. IEEE, (2021)Shaping Affective Robot Haru's Reactive Response., , , , , , and . RO-MAN, page 989-996. IEEE, (2021)Design and Development of a Teleoperation System for Affective Tabletop Robot Haru., , , , , , , , and . ICSR, volume 13086 of Lecture Notes in Computer Science, page 564-573. Springer, (2021)Remote You, Haru and Me: Exploring Social Interaction in Telepresence Gaming With a Robotic Agent., , and . HRI (Companion), page 283-287. ACM, (2021)Learning Three-dimensional Skeleton Data from Sign Language Video., , , and . ACM Trans. Intell. Syst. Technol., 11 (3): 30:1-30:24 (2020)Developing The Bottom-up Attentional System of A Social Robot., , , , , , , and . ICRA, page 7402-7408. IEEE, (2022)Developing an Engagement-Aware System for the Detection of Unfocused Interaction., , , and . RO-MAN, page 798-805. IEEE, (2021)