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Stay on Course in VR: Comparing the Precision of Movement between Gamepad, Armswinger, and Treadmill: Kurs halten in VR: Vergleich der Bewegungspräzision von Gamepad, Armswinger und Laufstall.

, , , , , and . MuC, page 354-365. ACM, (2021)

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HaptiX: Vibrotactile Haptic Feedback for Communication of 3D Directional Cues., , , , , and . CHI Extended Abstracts, page 154:1-154:7. ACM, (2023)Adaptive DoF: Concepts to Visualize AI-generated Movements in Human-Robot Collaboration., , , and . AVI, page 54:1-54:3. ACM, (2022)Exploring of Discrete and Continuous Input Control for AI-enhanced Assistive Robotic Arms., , and . HRI (Companion), page 828-832. ACM, (2024)Hands-On Robotics: Enabling Communication Through Direct Gesture Control., , , , , , and . HRI (Companion), page 822-827. ACM, (2024)Reflecting upon Participatory Design in Human-Robot Collaboration for People with Motor Disabilities: Challenges and Lessons Learned from Three Multiyear Projects., , , , and . PETRA, page 147-155. ACM, (2021)Stay on Course in VR: Comparing the Precision of Movement between Gamepad, Armswinger, and Treadmill: Kurs halten in VR: Vergleich der Bewegungspräzision von Gamepad, Armswinger und Laufstall., , , , , and . MuC, page 354-365. ACM, (2021)Recommendations for the Development of a Robotic Drinking and Eating Aid - An Ethnographic Study., , , , and . INTERACT (1), volume 12932 of Lecture Notes in Computer Science, page 331-351. Springer, (2021)Push Me: Evaluating Usability and User Experience in Nudge-based Human-Robot Interaction through Embedded Force and Torque Sensors., , , , and . MuC, page 399-407. ACM, (2024)In Time and Space: Towards Usable Adaptive Control for Assistive Robotic Arms., , , , and . RO-MAN, page 2300-2307. IEEE, (2023)Hand-in-Hand: Investigating Mechanical Tracking for User Identification in Cobot Interaction., , , , , , and . MUM, page 583-591. ACM, (2023)