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Design and concept of a haptic robotic telerehabilitation system for upper limb movement training after stroke

 
: Ivanova, E.; Krüger, J.; Steingräber, R.; Schmid, S.; Schmidt, H.; Hesse, S.

:

Yu, H. ; Institute of Electrical and Electronics Engineers -IEEE-; IEEE Robotics and Automation Society; IEEE Engineering in Medicine and Biology Society -EMBS-:
IEEE/RAS-EMBS International Conference on Rehabilitation Robotics, ICORR 2015. Proceedings. Vol.2 : Singapore, 11 - 14 August 2015
Piscataway, NJ: IEEE, 2015
ISBN: 978-1-4799-1809-6
ISBN: 978-1-4799-1808-9
ISBN: 978-1-4799-1807-2
S.666-671
International Conference on Rehabilitation Robotics (ICORR) <14, 2015, Singapore>
Englisch
Konferenzbeitrag
Fraunhofer IPK ()

Abstract
Robotic therapy devices have been an important part of clinical neurological rehabilitation for several years. Until now such devices are only available for patients receiving therapy inside rehabilitation hospitals. Since patients should continue rehabilitation training after hospital discharge at home, intelligent robotic rehab devices could help to achieve this goal. This paper proposes a novel multimodal home therapy concept and robot based system for motor telerehabilitation which is currently being further developed. The system is based on two haptic rehabilitation devices i) the Bi-Manu-Track (BMT) 2times1 DOF robotic haptic rehabilitation device with assist-as-needed control algorithms and ii) an enhanced version of the 3 DOF passive Reha-Slide system. The paper describes the technical system setup as well as user centered design aspects.

: http://publica.fraunhofer.de/dokumente/N-383094.html