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HODGKIN AL, HUXLEY AF (1952) Currents carried by sodium and potassium ions through the membrane of the giant axon of Loligo. J Physiol 116:449-72 [PubMed]

References and models cited by this paper

References and models that cite this paper

Adrian RH, Chandler WK, Hodgkin AL (1970) Voltage clamp experiments in striated muscle fibres. J Physiol 208:607-44 [PubMed]
   Action potential of striated muscle fiber (Adrian et al 1970) [Model]
Clay JR, Paydarfar D, Forger DB (2008) A simple modification of the Hodgkin and Huxley equations explains type 3 excitability in squid giant axons. J R Soc Interface 5:1421-8 [Journal] [PubMed]
   Model of Type 3 firing in neurons (Clay et al 2008) [Model]
Djurisic M, Popovic M, Carnevale N, Zecevic D (2008) Functional structure of the mitral cell dendritic tuft in the rat olfactory bulb. J Neurosci 28:4057-68 [Journal] [PubMed]
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Gu N, Vervaeke K, Storm JF (2007) BK potassium channels facilitate high-frequency firing and cause early spike frequency adaptation in rat CA1 hippocampal pyramidal cells. J Physiol 580:859-82 [Journal] [PubMed]
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   Ion channel modeling with whole cell and a genetic algorithm (Gurkiewicz and Korngreen 2007) [Model]
Hübel N, Andrew RD, Ullah G (2016) Large extracellular space leads to neuronal susceptibility to ischemic injury in a Na+/K+ pumps-dependent manner. J Comput Neurosci 40:177-92 [Journal] [PubMed]
   Anoxic depolarization, recovery: effect of brain regions and extracellular space (Hubel et al. 2016) [Model]
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   Current flow during PAP in squid axon at diameter change (Joyner et al 1980) [Model]
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Wang J,Si W, Che Y, Fei X (2008) Spike trains in Hodgkin–Huxley model and of acupuncture manipulations Chaos, Solitons and Fractals 36:890-900 [Journal]
   Spike trains in Hodgkin–Huxley model and ISIs of acupuncture manipulations (Wang et al. 2008) [Model]
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