Mesh generation and multi-scale simulation of a contracting muscle–tendon complex

Author:

Maier BenjaminORCID,Schulte MiriamORCID

Publisher

Elsevier BV

Subject

Modeling and Simulation,General Computer Science,Theoretical Computer Science

Reference45 articles.

1. B. Maier, N. Emamy, A. Krämer, M. Mehl, Highly parallel multi-physics simulation of muscular activation and EMG, in: Coupled Problems 2019, VIII International Conference On Coupled Problems In Science And Engineering, 2019, pp. 610–621.

2. Multiscale modeling of the neuromuscular system: Coupling neurophysiology and skeletal muscle mechanics;Röhrle;WIREs Syst. Biol. Med.,2019

3. Modeling the chemoelectromechanical behavior of skeletal muscle using the parallel open-source software library OpenCMISS;Heidlauf;Comput. Math. Methods Med.,2013

4. A multiscale chemo-electro-mechanical skeletal muscle model to analyze muscle contraction and force generation for different muscle fiber arrangements;Heidlauf;Front. Physiol.,2014

5. A multi-scale continuum model of skeletal muscle mechanics predicting force enhancement based on actin–titin interaction;Heidlauf;Biomech. Model. Mechanobiol.,2016

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1. A Three-Dimensional Model of Skeletal Muscle Tissues;SIAM Journal on Applied Mathematics;2024-05-07

2. Coupled simulations and parameter inversion for neural system and electrophysiological muscle models;GAMM-Mitteilungen;2024-03-31

3. Effect of Mesh Generation and its Usage for Computational Domains;2023 2nd International Conference for Innovation in Technology (INOCON);2023-03-03

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