The Benefit of Combining Neuronal Feedback and Feed-Forward Control for Robustness in Step Down Perturbations of Simulated Human Walking Depends on the Muscle Function
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%0 Journal Article
%1 haufle2018benefit
%A Häufle, Daniel F. B.
%A Schmortte, Birgit
%A Geyer, Hartmut
%A Müller, Roy
%A Schmitt, Syn
%D 2018
%I Frontiers Media
%J Frontiers in computational neuroscience
%K
%P 80
%R 10.3389/fncom.2018.00080
%T The Benefit of Combining Neuronal Feedback and Feed-Forward Control for Robustness in Step Down Perturbations of Simulated Human Walking Depends on the Muscle Function
%V 12
@article{haufle2018benefit,
added-at = {2023-08-31T14:50:58.000+0200},
affiliation = {Haeufle, DFB (Reprint Author), Eberhard Karls Univ Tubingen, Hertie Inst Clin Brain Res, Multilevel Modeling Motor Control \& Rehabil Robot, Tubingen, Germany.
Haeufle, DFB (Reprint Author), Eberhard Karls Univ Tubingen, Ctr Integrat Neurosci, Tubingen, Germany.
Haeufle, Daniel F. B., Eberhard Karls Univ Tubingen, Hertie Inst Clin Brain Res, Multilevel Modeling Motor Control \& Rehabil Robot, Tubingen, Germany.
Haeufle, Daniel F. B., Eberhard Karls Univ Tubingen, Ctr Integrat Neurosci, Tubingen, Germany.
Schmortte, Birgit; Schmitt, Syn, Univ Stuttgart, Stuttgart Ctr Simulat Sci SC SimTech, Biomech \& Biorobot, Stuttgart, Germany.},
author = {Häufle, Daniel F. B. and Schmortte, Birgit and Geyer, Hartmut and Müller, Roy and Schmitt, Syn},
biburl = {https://puma.ub.uni-stuttgart.de/bibtex/2516a4c024f3b505660711fa3439255ec/puma-wartung},
doi = {10.3389/fncom.2018.00080},
interhash = {51954b42afd55fec88a9e0160353b7a7},
intrahash = {516a4c024f3b505660711fa3439255ec},
issn = {1662-5188},
journal = {Frontiers in computational neuroscience},
keywords = {},
language = {eng},
orcid-numbers = {Schmitt, Syn/0000-0002-7768-8961
Muller, Roy/0000-0002-4688-1515},
pages = 80,
publisher = {Frontiers Media},
research-areas = {Mathematical & Computational Biology; Neurosciences & Neurology},
timestamp = {2023-08-31T12:50:58.000+0200},
title = {The Benefit of Combining Neuronal Feedback and Feed-Forward Control for Robustness in Step Down Perturbations of Simulated Human Walking Depends on the Muscle Function},
unique-id = {ISI:000446757000001},
volume = 12,
year = 2018
}