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Blight AR (1985) Computer simulation of action potentials and afterpotentials in mammalian myelinated axons: the case for a lower resistance myelin sheath. Neuroscience 15:13-31 [PubMed]

References and models cited by this paper

References and models that cite this paper

Brazhe AR, Maksimov GV, Mosekilde E, Sosnovtseva O (2010) Excitation block in a nerve fibre model owing to potassium-dependent changes in myelin resistance Journal of Interface Focus 1(1):86-100 [Journal]
   Myelinated nerve fibre myelin resistance dependent on extracellular K+ level (Brazhe et al. 2010) [Model]
Devaux J, Gow A (2008) Tight junctions potentiate the insulative properties of small CNS myelinated axons. J Cell Biol 183:909-21 [Journal] [PubMed]
   Tight junction model of CNS myelinated axons (Devaux and Gow 2008) [Model]
García-Grajales JA, Rucabado G, García-Dopico A, Peña JM, Jérusalem A (2015) Neurite, a finite difference large scale parallel program for the simulation of electrical signal propagation in neurites under mechanical loading. PLoS One 10:e0116532 [Journal] [PubMed]
   Neurite: electrophysiological-mechanical coupling simulation framework (Garcia-Grajales et al 2015) [Model]
McIntyre CC, Richardson AG, Grill WM (2002) Modeling the excitability of mammalian nerve fibers: influence of afterpotentials on the recovery cycle. J Neurophysiol 87:995-1006 [Journal] [PubMed]
   Spinal Motor Neuron (McIntyre et al 2002) [Model]
Shrager P (1993) Axonal coding of action potentials in demyelinated nerve fibers. Brain Res 619:278-90 [PubMed]
(5 refs)