Cole, K. S., and Moore, J. W.. (1960c).
Potassium ion current in the squid giant axon: Dynamic Characteristic.
Biophys. J. 1: 1-14.
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Fatt, P., and Katz, B. (1951).
An analysis of the end-plate potential recorded with an intra-cellular electrode
J. Physiol. 115: 320-370
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The Hodgkin and Huxley papers are reproduced here in PDF format by permission of the Journal of Physiology, Sir Andrew L. Huxley, Sir Bernard Katz, and the late Sir Alan Hodgkin's family.
Hodgkin, A. L., Huxley, A. F., and Katz, B. (1952).
Measurement of current-voltage relations in the membrane of the giant axon of Loligo
J. Physiol. 116: 424-448
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Hodgkin, A. L., and Huxley, A. F. (1952a).
Currents carried by sodium and potassium ions through the membrane of the giant axon of Loligo
J. Physiol. 116: 449-472
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Hodgkin, A. L., and Huxley, A. F. (1952b).
The components of membrane conductance in the giant axon of Loligo.
J. Physiol. 116: 473-496
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Hodgkin, A. L., and Huxley, A. F. (1952c).
The dual effect of membrane potential on sodium conductance in the giant axon of Loligo
J. Physiol. 116: 497-606
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Hodgkin A.L., and Huxley A.F. (1952d).
A quantative description of membrane current and its application to conduction and excitation in nerve
J. Physiol. 117: 500-544
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Hodgkin, A. L., and Katz, B. (1949a).
The effect of sodium ions on the electrical activity of the giant axon of the
squid.
J. Physiol. 108: 37-77.
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Joyner, R. W., Westerfield, M., and Moore, J. W. (1980).
Effects of cellular geometry on current flow during a propagated
action potential.
Biophys. J. 31: 183-194.
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Katz, B., and Miledi, R. (1965).
Propagation of electrical activity in motor nerve terminals
Proc. Royal Soc. B. 161: 453-482
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Katz, B. & Miledi, R. (1967)
The timing of calcium action during
neuromuscular transmission.
J Physiol. 189. pp 535-544
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Lindgren, C. A., and Moore, J. W. (1989).
Identification of ionic currents at presynaptic nerve
endings of the lizard
J. Physiol. 414: 210-222
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Moore, J. W., Blaustein, M., Anderson, N. C., and Narahashi, T.
(1967).
Basis of Tetrodotoxin's
selectivity in blockage of squid axons.
J. Gen. Physiol. 40: 1401-1411.
Full text in PDF format. Reproduced from The
Journal of General Physiology by copyright permission of The
Rockefeller University Press.
Moore, J. W., and Narahashi, T. (1967).
Tetrodotoxin's highly
selective blockage of an ionic channel.
Fed. Proc. 26: 1655-1663.
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PDF format. Reproduced by permission from the American Societies for Experimental Biology.
Moore, J. W., Stockbridge, N., and Westerfield, M.
(1983).
On the site of impulse initiation in a neurone.
J. Physiol. 336: 301-311.
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Moore, J. W. and Westerfield, M. (1983).
Action potential propagation and threshold parameters in
inhomogeneous
regions of squid axons.
J. Physiol. 336: 285-300
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Narahashi, T., Moore, J. W., and Scott, W. R. (1964).
Tetrodotoxin blockage of sodium conductance increase in lobster giant axons.
J. Gen. Physiol. 47: 965-974.
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Reproduced from The Journal of General Physiology by copyright permission of The
Rockefeller University Press.
Takata, M., . Moore, J. W, Kao, C. Y., and Fuhrman, F. A. (1966).
Blockage of sodium conductance
increase in lobster giant axon by Tarichatoxin (tetrodotoxin).
J. Gen. Physiol. 49: 977-988.
Full text in PDF format . Reproduced from The
Journal of General Physiology by copyright permission of The
Rockefeller University Press.
Westerfield, M., Joyner, R. W., and Moore, J. W. (1978).
Temperature-sensitive conduction failure at axon branch points
J. Neurophysiol. 41:1-8
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