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Wearable activity recognition for robust human-robot teaming in safety-critical environments via hybrid neural networks.

, , and . IROS, page 449-454. IEEE, (2019)

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Preference Learning in Assistive Robotics: Observational Repeated Inverse Reinforcement Learning., , , and . MLHC, volume 85 of Proceedings of Machine Learning Research, page 420-439. PMLR, (2018)Coordinating Clinical Teams: Using Robots to Empower Nurses to Stop the Line., , , and . PACMHCI, 3 (CSCW): 221:1-221:30 (2019)Contextual Constraints for the Design of Patient-Centered Health IT Tools., , and . CSHI, volume 194 of Studies in Health Technology and Informatics, page 75-81. IOS Press, (2013)Unseen Salient Object Discovery for Monocular Robot Vision., and . IEEE Robotics Autom. Lett., 5 (2): 1484-1491 (2020)The Age of Avatar Realism., and . IEEE Robotics Autom. Mag., 17 (4): 37-42 (2010)Telepresence Robots for Dynamic, Safety-Critical Environments., and . HRI (Companion), page 130-132. ACM, (2024)Envisioning Mobile Telemanipulator Robots for Long Covid., , , , and . HRI (Companion), page 488-491. ACM, (2024)Detecting and Synthesizing Synchronous Joint Action in Human-Robot Teams., and . ICMI, page 581-585. ACM, (2015)Social Navigation for Mobile Robots in the Emergency Department., , , and . ICRA, page 3510-3516. IEEE, (2021)Taking an (Embodied) Cue From Community Health: Designing Dementia Caregiver Support Technology to Advance Health Equity., , , , and . CHI, page 655:1-655:16. ACM, (2021)