scientific article
From MaRDI portal
Publication:3775366
zbMath0635.92003MaRDI QIDQ3775366
Publication date: 1981
Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.
computer programsmodel simulationsANSI FORTRAN IVfunctional characteristicsmodels of muscular contractionmyocybernetic control model of skeletal muscleparameter determinations
Biophysics (92C05) Biomechanical solid mechanics (74L15) Research exposition (monographs, survey articles) pertaining to biology (92-02) Software, source code, etc. for problems pertaining to biology (92-04) Physiological, cellular and medical topics (92Cxx)
Related Items (14)
Comparative sensitivity analysis of muscle activation dynamics ⋮ A model of open-loop control of equilibrium position and stiffness of the human elbow joint ⋮ Influence of the mechanical properties of the muscle-tendon unit on force generation in runners with different running economy ⋮ Electrical stimulation tracking control for paraplegic patients using T-S fuzzy models ⋮ Corrigendum to ``Comparative sensitivity analysis of muscle activation dynamics ⋮ Corrigendum to: ``Extracting low-velocity concentric and eccentric dynamic muscle properties from isometric contraction experiments ⋮ The dynamics of the skeletal muscle: A systems biophysics perspective on muscle modeling with the focus on Hill‐type muscle models ⋮ Parameter estimation and experimental design for Hill-type muscles: impulses from optimization-based modeling ⋮ Inter-filament spacing mediates calcium binding to troponin: a simple geometric-mechanistic model explains the shift of force-length maxima with muscle activation ⋮ High-frequency oscillations as a consequence of neglected serial damping in Hill-type muscle models ⋮ Hill equation and Hatze's muscle activation dynamics complement each other: enhanced pharmacological and physiological interpretability of modelled activity-pCa curves ⋮ A numerical procedure for inferring from experimental data the optimization cost functions using a multibody model of the neuro-musculoskeletal system ⋮ How to model a muscle's active force-length relation: a comparative study ⋮ Efficient forward dynamics simulation and optimization of human body dynamics
This page was built for publication: