Kazan (Volga region) Federal University, KFU
KAZAN
FEDERAL UNIVERSITY
 
NUMERICAL SIMULATION OF MOTILITY PATTERNS OF THE SMALL BOWEL. 1. FORMULATION OF A MATHEMATICAL MODEL
Form of presentationArticles in international journals and collections
Year of publication1999
Языканглийский
  • Abdyusheva Guzel Ravilevna, author
  • Christensen James , author
  • Miftakhov Rustem Narimanovich, author
  • Bibliographic description in the original language Abdusheva G.R. Numerical simulation of motility patterns of the small bowel. 1. Formulation of a mathematical model / RN Miftakhov, GR Abdusheva, J Christensen - Journal of theoretical biology, 1999 - Elsevier - 197 (1), 89-112
    Annotation A complete mathematical model of the periodic myoelectrical activity of a functional unit of the small intestine is presented. Based on real morphological and electrophysiological data, the model assumes that: the functional unit is an electromyogenic syncytium; the kinetics of L-type Ca2+, T-type Ca2+, Ca2+-activated K+, voltage dependent K+and Cl−channels determine the electrical activity of the functional unit; the enteric nervous system is satisfactorily represented by an efferent cholinergic neuron that provides an excitatory input to the functional unit through receptor-linked L-type Ca2+channels and by an afferent pathway composed of the primary and secondary sensory neurons; the dynamics of propagation of the wave of depolarization along the unmyelinated nerve axons satisfy the Hodgkin–Huxley model; the electrical activity of the neural soma reflects the interaction of N-type Ca2+channels, Ca2 …
    Keywords numerical simulation, mathematical model, motility patterns, Hodgkin?Huxley model, the electrical activity
    The name of the journal JOURNAL OF THEORETICAL BIOLOGY
    URL http://www.scopus.com/inward/record.url?eid=2-s2.0-0033531454&partnerID=MN8TOARS
    Please use this ID to quote from or refer to the card https://repository.kpfu.ru/eng/?p_id=266208&p_lang=2
    Resource files 
    File name Size (MB) Format  
    st1.jpg 0,30 jpg show / download

    Full metadata record