Michael Günther

Orcid: 0000-0002-5729-1190

Affiliations:
  • University of Stuttgart, Sports Science, Germany
  • University of Tübingen, Germany (PhD 1997)


According to our database1, Michael Günther authored at least 14 papers between 1993 and 2021.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

Legend:

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In proceedings 
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PhD thesis 
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Links

Online presence:

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Bibliography

2021
Correction to: A geometry- and muscle-based control architecture for synthesising biological movement.
Biol. Cybern., 2021

A geometry- and muscle-based control architecture for synthesising biological movement.
Biol. Cybern., 2021

2020
Muscles Reduce Neuronal Information Load: Quantification of Control Effort in Biological vs. Robotic Pointing and Walking.
Frontiers Robotics AI, 2020

2018
Bioinspired pneumatic muscle spring units mimicking the human motion apparatus: benefits for passive motion range and joint stiffness variation in antagonistic setups.
Proceedings of the 25th International Conference on Mechatronics and Machine Vision in Practice, 2018

2017
Corrigendum to "Comparative Sensitivity Analysis of Muscle Activation Dynamics".
Comput. Math. Methods Medicine, 2017

2015
Comparative Sensitivity Analysis of Muscle Activation Dynamics.
Comput. Math. Methods Medicine, 2015

Musculo-Skeletal Models as Tools to Quantify Embodiment.
Proceedings of the Thirteenth European Conference Artificial Life, 2015

2013
Theoretical Hill-Type Muscle and Stability: Numerical Model and Application.
Comput. Math. Methods Medicine, 2013

2012
Spreading out Muscle Mass within a Hill-Type Model: A Computer Simulation Study.
Comput. Math. Methods Medicine, 2012

2007
High-frequency oscillations as a consequence of neglected serial damping in Hill-type muscle models.
Biol. Cybern., 2007

2003
Synthesis of two-dimensional human walking: a test of the lambda-model.
Biol. Cybern., 2003

2001
Stable operation of an elastic three-segment leg.
Biol. Cybern., 2001

1997
Computersimulationen zur Synthetisierung des muskulär erzeugten menschlichen Gehens unter Verwendung eines biomechanischen Mehrkörpermodells.
PhD thesis, 1997

1993
Interactive control of biomechanical animation.
Vis. Comput., 1993


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