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Equivalent linear damping characterization in linear and nonlinear force-stiffness muscle models

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Publication:310148
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DOI10.1007/s00422-016-0680-zzbMath1345.92029OpenAlexW2295536938WikidataQ50721068 ScholiaQ50721068MaRDI QIDQ310148

Mohammad Mahdavian, Mohammad Ali Nazari, Marzieh Ovesy

Publication date: 8 September 2016

Published in: Biological Cybernetics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s00422-016-0680-z


zbMATH Keywords

time constantHill-type modelslinear dampingmuscle modeling


Mathematics Subject Classification ID

Biomechanics (92C10)


Related Items (1)

Hysteresis in Muscle


Uses Software

  • OpenSim


Cites Work

  • The effect of intrinsic muscular nonlinearities on the energetics of locomotion in a computational model of an anguilliform swimmer
  • Nonlinearities make a difference: comparison of two common Hill-type models with real muscle
  • A mathematical analysis of the force-stiffness characteristics of muscles in control of a single joint system
  • Stability of bipedal stance: the contribution of cocontraction and spindle feedback
  • Synthesis of two-dimensional human walking: a test of the \(\lambda\)-model


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