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User Models for Post-stroke Therapies and Consequences for the Interaction with a Humanoid Robot.

, and . CHIRA, page 283-290. SCITEPRESS, (2021)

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Patient and Therapist Model Attributes for Social Robot Stroke Therapies Based on Implicit Knowledge from Expert Interviews., and . KES-HCIS, volume 310 of Smart Innovation, Systems and Technologies, page 41-51. Springer, (2022)Engineering the Interaction of a Humanoid Robot Pepper with Post-Stroke Patients During Training Tasks., , and . EICS, page 38-43. ACM, (2021)Assistance App for a Humanoid Robot and Digitalization of Training Tasks for Post-stroke Patients., , and . KES-HCIS, volume 189 of Smart Innovation, Systems and Technologies, page 41-51. Springer, (2020)User Models for Post-stroke Therapies and Consequences for the Interaction with a Humanoid Robot., and . CHIRA, page 283-290. SCITEPRESS, (2021)Coping with the Complexity of Software for a Humanoid Robot Pepper., and . BIR Workshops, volume 2991 of CEUR Workshop Proceedings, page 16-25. CEUR-WS.org, (2021)Challenges with Traditional Human-Centered Design for Developing Neurorehabilitation Software., , and . HCSE, volume 13482 of Lecture Notes in Computer Science, page 44-56. Springer, (2022)Interaction and Dialogue Design of a Humanoid Social Robot in an Analogue Neurorehabilitation Application., , and . KES-HCIS, volume 244 of Smart Innovation, Systems and Technologies, page 76-85. Springer, (2021)Digitalization of Training Tasks and Specification of the Behaviour of a Social Humanoid Robot as Coach., , , and . HCSE, volume 12481 of Lecture Notes in Computer Science, page 45-57. Springer, (2020)Developing a Patient-Therapist-Robot User Model for Motivation in Neurorehabilitation Therapies.. UMAP, page 380-383. ACM, (2020)Constructing a neurovisual therapy for with a social robot for a neglect handicap., and . EICS (Workshops), volume 3404 of CEUR Workshop Proceedings, page 49-56. CEUR-WS.org, (2022)