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  4. Modeling discrete and rhythmic movements through motor primitives: a review
 

Modeling discrete and rhythmic movements through motor primitives: a review

URI
https://arbor.bfh.ch/handle/arbor/31157
Version
Published
Date Issued
2010-10
Author(s)
Dégallier Rochat, Sarah  
Ijspeert, Auke
Type
Article
Language
English
Abstract
Rhythmic and discrete movements are frequently considered separately in motor control, probably because different techniques are commonly used to study and model them. Yet the increasing interest in finding a comprehensive model for movement generation requires bridging the different perspectives arising from the study of those two types of movements. In this article, we consider discrete and rhythmic movements within the framework of motor primitives, i.e., of modular generation of movements. In this way we hope to gain an insight into the functional relationships between discrete and rhythmic movements and thus into a suitable representation for both of them. Within this framework we can define four possible categories of modeling for discrete and rhythmic movements depending on the required command signals and on the spinal processes involved in the generation of the movements. These categories are first discussed in terms of biological concepts such as force fields and central pattern generators and then illustrated by several mathematical models based on dynamical system theory. A discussion on the plausibility of theses models concludes the work.
Subjects
TA Engineering (General). Civil engineering (General)
DOI
10.24451/arbor.8661
https://doi.org/10.24451/arbor.8661
Publisher DOI
10.1007/s00422-010-0403-9
Journal
Biological Cybernetics
ISSN
0340-1200
Publisher URL
https://link.springer.com/article/10.1007/s00422-010-0403-9
Organization
Institute for Human Centered Engineering (HUCE)  
Technik und Informatk  
Volume
103
Issue
4
Publisher
Springer
Submitter
Dégallier Rochat, Sarah
Citation apa
Dégallier Rochat, S., & Ijspeert, A. (2010). Modeling discrete and rhythmic movements through motor primitives: a review. In Biological Cybernetics (Vol. 103, Issue 4). Springer. https://doi.org/10.24451/arbor.8661
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