Publication | Closed Access
Limitations of the Hodgkin-Huxley Formalism: Effects of Single Channel Kinetics on Transmembrane Voltage Dynamics
203
Citations
14
References
1993
Year
Biophysical ModelingSocial SciencesMacroscopic Membrane CurrentsTransmembrane Voltage DynamicsNeurodynamicsMembrane TransportStochastic ProcessesStandard Membrane ModelBrain ModelingBiophysicsPhysicsMembrane ComputingIon ChannelsSingle Channel KineticsBiophysical AspectAlternative Membrane ModelNeurophysiologyComputational NeurosciencePhysiologyNeuronal NetworkElectrophysiologyNeuroscienceMedicineHodgkin-huxley Formalism
A standard membrane model, based on the continuous deterministic Hodgkin-Huxley equations, is compared to an alternative membrane model, based on discrete stochastic ion channel populations represented through Markov processes. Simulations explore the relationship between these two levels of description: the behavior predicted by the macroscopic membrane currents versus the behavior predicted by their microscopic ion channels. Discussion considers the extent to which these random events underlying neural signals mediate random events in neural computation.
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