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Memristive Model of the Barnacle Giant Muscle Fibers

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19 Scopus citations

Abstract

The generation of action potentials (oscillations) in biological systems is a complex, yet poorly understood nonlinear dynamical phenomenon involving ions. This paper reveals that the time-varying calcium ion and the time-varying potassium ion, which are essential for generating action potentials in Barnacle giant muscle fibers are in fact generic memristors in the perspective of electrical circuit theory. We will show that these two ions exhibit all the fingerprints of memristors from the equations of the Morris-Lecar model of the Barnacle giant muscle fibers. This paper also gives a textbook reference to understand the difference between memristor and nonlinear resistor via analysis of the potassium ion-channel memristor and calcium ion-channel nonlinear resistor. We will also present a comprehensive in-depth analysis of the generation of action potentials (oscillations) in memristive Morris-Lecar model using small-signal circuit model and the Hopf bifurcation theorem.

Original languageEnglish
Article number1630001
JournalInternational Journal of Bifurcation and Chaos
Volume26
Issue number1
DOIs
StatePublished - Jan 1 2016

Keywords

  • Barnacle giant muscle fibers
  • Hopf bifurcation
  • Morris-Lecar model
  • Oscillations
  • action potential
  • eigenvalues
  • memristor
  • nonlinear resistor
  • subcritical

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