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June 1, 1977The Journal of Physiology1,435 citationsOpen Access

Reconstruction of the action potential of ventricular myocardial fibres

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GBGeorge W. BeelerHRH. Réuter

Structured PICO

P
Population
Mammalian ventricular myocardial fibres (mathematical model)
I
Intervention
Mathematical modeling of membrane action potentials using Hodgkin-Huxley type equations based on ionic currents measured by voltage-clamp method
O
Outcome
Reconstruction of the action potential and evaluation of ionic current components

A mathematical model successfully reconstructs the action potential of mammalian ventricular myocardial fibres based on four individual components of ionic current.

Limitations

  • Possible inadequacies and shortcomings of the model are discussed.

Abstract

A mathematical model of membrane action potentials of mammalian ventricular myocardial fibres is described. The reconstruction model is based as closely as possible on ionic currents which have been measured by the voltage‐clamp method. 2. Four individual components of ionic current were formulated mathematically in terms of Hodgkin—Huxley type equations. The model incorporates two voltage‐ and time‐dependent inward currents, the excitatory inward sodium current, i Na , and a secondary or slow inward current, i s , primarily carried by calcium ions. A time‐independent outward potassium current, i K 1 , exhibiting inward‐going rectification, and a voltage‐ and time‐dependent outward current, i x 1 , primarily carried by potassium ions, are further elements of the model. 3. The i Na is primarily responsible for the rapid upstroke of the action potential, while the other current components determine the configuration of the plateau of the action potential and the re‐polarization phase. The relative importance of inactivation of i s and of activation of i x 1 for termination of the plateau is evaluated by the model. 4. Experimental phenomena like slow recovery of the sodium system from inactivation, frequency dependence of the action potential duration, all‐or‐nothing re‐polarization, membrane oscillations are adequately described by the model. 5. Possible inadequacies and shortcomings of the model are discussed.

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Cite This Study

Beeler et al. (1977) studied this question.

synapsesocial.com/papers/6a16a5394f6063e06b05031fhttps://doi.org/10.1113/jphysiol.1977.sp011853
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Slow recovery from inactivation of inward currents in mammalian myocardial fibres1974 · 324 citations
  2. 2Voltage clamp experiments on ventricular myocardial fibres1970 · 254 citations
  3. 3Outward membrane currents activated in the plateau range of potentials in cardiac Purkinje fibres1969 · 459 citations
  4. 4The positive dynamic current and its inactivation properties in cardiac Purkinje fibres1973 · 157 citations
  5. 5The kinetics and rectifier properties of the slow potassium current in cardiac Purkinje fibres1968 · 490 citations