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Title:

An Adaptive Mechatronic Exoskeleton for Force-Controlled Finger Rehabilitation.

Document type:
Journal Article
Author(s):
Dickmann, Thomas; Wilhelm, Nikolas J; Glowalla, Claudio; Haddadin, Sami; van der Smagt, Patrick; Burgkart, Rainer
Abstract:
This paper presents a novel mechatronic exoskeleton architecture for finger rehabilitation. The system consists of an underactuated kinematic structure that enables the exoskeleton to act as an adaptive finger stimulator. The exoskeleton has sensors for motion detection and control. The proposed architecture offers three main advantages. First, the exoskeleton enables accurate quantification of subject-specific finger dynamics. The configuration of the exoskeleton can be fully reconstructed usin...     »
Journal title abbreviation:
Front. Robot. AI
Year:
2021
Journal volume:
8
Fulltext / DOI:
doi:10.3389/frobt.2021.716451
Pubmed ID:
http://view.ncbi.nlm.nih.gov/pubmed/34660703
Print-ISSN:
2296-9144
TUM Institution:
Klinik und Poliklinik für Orthopädie und Sportorthopädie
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