David G, Modney B, Scappaticci KA, Barrett JN, Barrett EF. (1995). Electrical and morphological factors influencing the depolarizing after-potential in rat and lizard myelinated axons. The Journal of physiology. 489 ( Pt 1) [PubMed]

See more from authors: David G · Modney B · Scappaticci KA · Barrett JN · Barrett EF

References and models cited by this paper
References and models that cite this paper

Gaines JL, Finn KE, Slopsema JP, Heyboer LA, Polasek KH. (2018). A model of motor and sensory axon activation in the median nerve using surface electrical stimulation. Journal of computational neuroscience. 45 [PubMed]

McIntyre CC, Grill WM. (2002). Extracellular stimulation of central neurons: influence of stimulus waveform and frequency on neuronal output. Journal of neurophysiology. 88 [PubMed]

McIntyre CC, Richardson AG, Grill WM. (2002). Modeling the excitability of mammalian nerve fibers: influence of afterpotentials on the recovery cycle. Journal of neurophysiology. 87 [PubMed]

Mosekilde E, Brazhe AR, Maksimov GV, Sosnovtseva O. (2010). Excitation block in a nerve fibre model owing to potassium-dependent changes in myelin resistance Journal of Interface Focus. 1(1)

Ohura S, Kamiya H. (2018). Sodium Channel-Dependent and -Independent Mechanisms Underlying Axonal Afterdepolarization at Mouse Hippocampal Mossy Fibers. eNeuro. 5 [PubMed]

Yi G, Grill WM. (2018). Frequency-dependent antidromic activation in thalamocortical relay neurons: effects of synaptic inputs. Journal of neural engineering. 15 [PubMed]

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