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Application of muscle model to the musculoskeletal modeling

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Języki publikacji
EN
Abstrakty
EN
The purpose of this paper is to investigate new fusiform muscle models. Each of these models treats a muscle as a system composed of parts characterized by different mechanical properties. These models explain the influence of differences in the stiffness of lateral parts and the degree of muscle model discretization. Each muscle model is described by a system of differential equations and a single integro-differential equation. Responses of fifty-four muscle model forms are examined using a complex exertion composed of three types: eccentric-concentric exertion, isokinetic-isometric exertion and step exertion.
Rocznik
Strony
29--39
Opis fizyczny
Bibliogr. 11 poz., rys., tab.
Twórcy
autor
autor
Bibliografia
  • [1] de LUCA C.J., The use of surface electromyography in biomechanics, Journal of Applied Biomechanics, 1997, 13, 135–163.
  • [2] WOJNICZ W., Modelowanie i symulacja zachowania zespołu mięśni szkieletowych układu ramię–przedramię, PhD Thesis, 2009, Technical University of Łódź, Poland.
  • [3] WOJNICZ W., WITTBRODT E., Analysis of muscles behaviour. Part I – The computational model of muscle, Acta of Bioengineering and Biomechanics, 2009, No. 4, 15–21.
  • [4] WOJNICZ W., WITTBRODT E., Analysis of muscles behaviour. Part II – The computational model of muscles group acting on the elbow joint, Acta of Bioengineering and Biomechanics, 2010, No. 1, 3–10.
  • [5] YUCESOY C.A., KOOPMAN B.H.F.J.M., HUIJING P.A., GROOTENBOER H.J., Three dimensional finite element modeling of skeletal muscle using a two-domain approach: linked fiber-matrix mesh model, Journal of Biomechanics, 2002, 35, 1253–1262.
  • [6] BULLIMORE S.R., LEONARD T.R., RASSIER D.E., HERZOG W., History-dependence of isometric muscle force: Effect of prior stretch or shortening amplitude, Journal of Biomechanics, 2007, 40, 1518–1524.
  • [7] HERZOG W., History dependence of force production in skeletal muscle: a proposal for mechanisms, Journal of Electromyography and Kinesiology, 1998, 8, 111–117.
  • [8] McGOWAN C.P., NEPTUNE R., HERZOG W., A phenomenological model and validation of shortening-induced force depression during muscle contractions, Journal of Biomechanics, 2010, 43, 449–454.
  • [9] ROUSANOGLOU E.N., OSKOUEI A.E., HERZOG W., Force depression following muscle shortening in sub-maximal voluntary contractions of human adductor pollicis. Journal of Biomechanics, 2007, 40, 1–8.
  • [10] HUIJING P.A., Parameter interdependence and success of skeletal muscle modeling, Human Movement Science, 1995, 14, 443–486.
  • [11] WOJNICZ W., WITTBRODT E., Chosen aspects of muscle biomechanics. Dynamical Systems, Nonlinear Dynamics and Control, The 11-th Conference on Dynamical Systems, Theory and Applications, J. Awrejcewicz et al. (ed.), 2011, 263–268.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPBD-0003-0018
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