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Zalc B (2006). "The Acquisition of Myelin: A Success Story". Purinergic Signalling in Neuron–Glia Interactions. Novartis Foundation Symposia. Vol.276. pp.15–21, discussion 21–5, 54–7, 275–81. doi:10.1002/9780470032244.ch3. ISBN978-0-470-03224-4. PMID16805421.
Poliak S, Peles E (December 2003). "The local differentiation of myelinated axons at nodes of Ranvier". Nature Reviews. Neuroscience. 4 (12): 968–80. doi:10.1038/nrn1253. PMID14682359. S2CID14720760.
Costa LG (April 2006). "Current issues in organophosphate toxicology". Clinica Chimica Acta; International Journal of Clinical Chemistry. 366 (1–2): 1–13. doi:10.1016/j.cca.2005.10.008. PMID16337171.
Tamargo J, Caballero R, Delpón E (January 2004). "Pharmacological approaches in the treatment of atrial fibrillation". Current Medicinal Chemistry. 11 (1): 13–28. doi:10.2174/0929867043456241. PMID14754423.
Slayman CL, Long WS, Gradmann D (April 1976). ""Action potentials" in Neurospora crassa, a mycelial fungus". Biochimica et Biophysica Acta (BBA) - Biomembranes. 426 (4): 732–44. doi:10.1016/0005-2736(76)90138-3. PMID130926.
Mummert H, Gradmann D (December 1991). "Action potentials in Acetabularia: measurement and simulation of voltage-gated fluxes". The Journal of Membrane Biology. 124 (3): 265–73. doi:10.1007/BF01994359. PMID1664861. S2CID22063907.
Gradmann D, Hoffstadt J (November 1998). "Electrocoupling of ion transporters in plants: interaction with internal ion concentrations". The Journal of Membrane Biology. 166 (1): 51–9. doi:10.1007/s002329900446. PMID9784585. S2CID24190001.
Ling G, Gerard RW (December 1949). "The normal membrane potential of frog sartorius fibers". Journal of Cellular and Comparative Physiology. 34 (3): 383–96. doi:10.1002/jcp.1030340304. PMID15410483.
Piccolino M (October 1997). "Luigi Galvani and animal electricity: two centuries after the foundation of electrophysiology". Trends in Neurosciences. 20 (10): 443–8. doi:10.1016/S0166-2236(97)01101-6. PMID9347609. S2CID23394494.
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Poliak S, Peles E (December 2003). "The local differentiation of myelinated axons at nodes of Ranvier". Nature Reviews. Neuroscience. 4 (12): 968–80. doi:10.1038/nrn1253. PMID14682359. S2CID14720760.
Tasaki I, Takeuchi T (1941). "Der am Ranvierschen Knoten entstehende Aktionsstrom und seine Bedeutung für die Erregungsleitung". Pflügers Archiv für die gesamte Physiologie. 244 (6): 696–711. doi:10.1007/BF01755414. S2CID8628858. * Tasaki I, Takeuchi T (1942). "Weitere Studien über den Aktionsstrom der markhaltigen Nervenfaser und über die elektrosaltatorische Übertragung des nervenimpulses". Pflügers Archiv für die gesamte Physiologie. 245 (5): 764–82. doi:10.1007/BF01755237. S2CID44315437.
Mummert H, Gradmann D (December 1991). "Action potentials in Acetabularia: measurement and simulation of voltage-gated fluxes". The Journal of Membrane Biology. 124 (3): 265–73. doi:10.1007/BF01994359. PMID1664861. S2CID22063907.
Gradmann D, Hoffstadt J (November 1998). "Electrocoupling of ion transporters in plants: interaction with internal ion concentrations". The Journal of Membrane Biology. 166 (1): 51–9. doi:10.1007/s002329900446. PMID9784585. S2CID24190001.
Piccolino M (October 1997). "Luigi Galvani and animal electricity: two centuries after the foundation of electrophysiology". Trends in Neurosciences. 20 (10): 443–8. doi:10.1016/S0166-2236(97)01101-6. PMID9347609. S2CID23394494.
Purves D, Augustine GJ, Fitzpatrick D, etal., eds. (2001). "Voltage-Gated Ion Channels". Neuroscience (2nded.). Sunderland, MA: Sinauer Associates. Archived from the original on 5 June 2018. Retrieved 29 August 2017.
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Tasaki, I in Field 1959, pp.75–121 Field J, ed. (1959). Handbook of Physiology: a Critical, Comprehensive Presentation of Physiological Knowledge and Concepts: Section 1: Neurophysiology. Vol.1. Washington, DC: American Physiological Society. LCCN60004587. OCLC830755894.
Segev I, Fleshman JW, Burke RE (1989). "Compartmental Models of Complex Neurons". In Koch C, Segev I (eds.). Methods in Neuronal Modeling: From Synapses to Networks. Cambridge, Massachusetts: The MIT Press. pp.63–96. ISBN978-0-262-11133-1. LCCN88008279. OCLC18384545.
Finkelstein GW (2013). Emil du Bois-Reymond: neuroscience, self, and society in nineteenth-century Germany. Cambridge, Massachusetts. ISBN978-1-4619-5032-5. OCLC864592470.{{cite book}}: CS1 maint: location missing publisher (link)
Bernstein 1912. Bernstein J (1912). Elektrobiologie, die Lehre von den elektrischen Vorgängen im Organismus auf moderner Grundlage dargestellt[Electric Biology, the study of the electrical processes in the organism represented on a modern basis]. Braunschweig: Vieweg und Sohn. LCCN12027986. OCLC11358569.
Sato, S; Fukai, H; Nomura, T; Doi, S in Reeke et al. 2005, Bifurcation Analysis of the Hodgkin-Huxley Equations, pp. 459–478. * FitzHugh, R in Schwann 1969, Mathematical models of axcitation and propagation in nerve, pp. 12–16. * Guckenheimer & Holmes 1986, pp.12–16 Reeke GN, Poznanski RR, Sporns O, Rosenberg JR, Lindsay KA, eds. (2005). Modeling in the Neurosciences: from Biological Systems to Neuromimetic Robotics. Boca Raton, Fla.: Taylor & Francis. ISBN978-0-415-32868-5. LCCN2005298022. OCLC489024131. Schwann HP, ed. (1969). Biological Engineering. Inter-University Electronics Series. Vol.9. New York: McGraw-Hill. ISBN978-0-07-055734-5. LCCN68027513. OCLC51993. Guckenheimer J, Holmes P, eds. (1986). Nonlinear Oscillations, Dynamical Systems and Bifurcations of Vector Fields. Applied Mathematical Sciences. Vol.42 (2nded.). New York: Springer Verlag. ISBN978-0-387-90819-9. OCLC751129941.
Nelson, ME; Rinzel, J in Bower & Beeman 1995, The Hodgkin-Huxley Model, pp. 29–49. * Rinzel, J & Ermentrout, GB; in Koch & Segev 1989, Analysis of Neural Excitability and Oscillations, pp. 135–169. Bower JM, Beeman D (1995). The Book of GENESIS: Exploring Realistic Neural Models with the GEneral NEural SImulation System. Santa Clara, Calif.: TELOS. ISBN978-0-387-94019-9. LCCN94017624. OCLC30518469. Koch C, Segev I, eds. (1989). Methods in Neuronal Modeling: From Synapses to Networks. Cambridge, Massachusetts: The MIT Press. ISBN978-0-262-11133-1. LCCN88008279. OCLC18384545.