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Bioinspiration & Biomimetics|February 27, 2010
The role of intrinsic muscle properties for stable hopping--stability is achieved by the force-velocity relationD F B Haeufle, S Grimmer, A Seyfarth
Bioinspiration & Biomimetics|June 26, 2012
Nature as an engineer: one simple concept of a bio-inspired functional artificial muscleS Schmitt, D F B Haeufle, R Blickhan, et al.
Journal of Biomechanics|March 12, 2014
Hill-type muscle model with serial damping and eccentric force-velocity relationD F B Haeufle, M Günther, A Bayer, et al.
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 4, 2014
Quantifying control effort of biological and technical movements: an information-entropy-based approachD F B Haeufle, M Günther, G Wunner, et al.
Computer Methods in Biomechanics and Biomedical Engineering|April 8, 2017
The influence of biophysical muscle properties on simulating fast human arm movementsA Bayer, S Schmitt, M Günther, et al.
IEEE ... International Conference on Rehabilitation Robotics : [Proceedings]|January 26, 2012
Proof of concept of an artificial muscle: theoretical model, numerical model, and hardware experimentD F B Haeufle, M Günther, R Blickhan, et al.
Journal of the Royal Society, Interface|January 6, 2012
Integration of intrinsic muscle properties, feed-forward and feedback signals for generating and stabilizing hoppingD F B Haeufle, S Grimmer, K-T Kalveram, et al.
Computer Methods in Biomechanics and Biomedical Engineering|December 28, 2020
Development of a musculoskeletal model of the wrist to predict frictional work dissipated due to tendon gliding resistance in the carpal tunnelJ D Glenday, B Steinhilber, F Jung, et al.
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