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Cation permeation of the amphibian motor end-plate.
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End-plate channels behave as neutral site channels.
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Voltage clamp analysis of acetylcholine produced end-plate current fluctuations at frog neuromuscular junction.
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Intracellular pH transients in squid giant axons caused by CO2, NH3, and metabolic inhibitors.
J Gen Physiol. 1976 Jan;67(1):91-112
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The maintenance of resting potentials in glycerol-treated muscle fibres.
J Physiol. 1971 May;215(1):95-102
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Experimentally observed effects of carriers on the electrical properties of bilayer membranes--equilibrium domain. With a contribution on the molecular basis of ion selectivity.
Membranes. 1973;2:179-328
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Octanol reduces end-plate channel lifetime.
J Physiol. 1978 Jan;274:279-98
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Action potentials without contraction in frog skeletal muscle fibers with disrupted transverse tubules.
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An analysis of the action of a false transmitter at the neuromuscular junction.
J Physiol. 1977 Apr;266(2):361-95
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Membrane noise produced by acetylcholine.
Nature. 1970 Jun 6;226(5249):962-3
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Conductance of end-plate channels is voltage dependent.
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Life time and elementary conductance of the channels mediating the excitatory effects of acetylcholine in Aplysia neurones.
J Physiol. 1978 May;278:177-206
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Permeant cations alter endplate channel characteristics.
Nature. 1977 Oct 20;269(5630):711-3
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Cation permeation mechanisms and cation selectivity in "tight junctions" of gallbladder epithelium.
Membranes. 1975;3:383-497
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A voltage-clamp study of the permeability change induced by quanta of transmitter at the mouse end-plate.
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Fibrillation of muscle fibers produced by ammonium ions and its relation to the spontaneous activity at the neuromuscular junction.
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Lifetime and conductance of acetylcholine-activated channels in normal and denervated toad sartorius muscle.
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Membrane surface potential changes may alter drug interactions: an example, acetylcholine and curare.
Science. 1979 Mar 30;203(4387):1351-2
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Permeability of the endplate membrane activated by acetylcholine to some organic cations.
J Neurobiol. 1977 Mar;8(2):173-84
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Effects of methyl- and ethyl-derivatives of NH4 on the neuromuscular junction.
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The permeability of the sodium channel to metal cations in myelinated nerve.
J Gen Physiol. 1972 Jun;59(6):637-58
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Calcium conductance of acetylcholine-induced endplate channels.
Nature. 1979 Jun 14;279(5714):638-9
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Ion-concentration dependence of the reversal potential and the single channel conductance of ion channels at the frog neuromuscular junction.
J Physiol. 1979 Jan;286:417-45
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Liquid junction and membrane potentials of the squid giant axon.
J Gen Physiol. 1960 May;43:971-80
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The effect of carbon dioxide on the intracellular pH and buffering power of snail neurones.
J Physiol. 1976 Mar;255(3):715-35
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Some ionic factors that influence the action of acetylcholine at the muscle end-plate membrane.
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Ionic currents in response to membrane depolarization in an Aplysia neurone.
J Physiol. 1979 Apr;289:115-41
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Effects of [Ca2+] and [Mg2+] on the decay of miniature endplate currents.
Nature. 1978 Jan 5;271(5640):77-9
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Miniature end-plate currents and potentials generated by quanta of acetylcholine in glycerol-treated toad sartorius fibres.
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Negative surface charge near sodium channels of nerve: divalent ions, monovalent ions, and pH.
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The effect of sodium ions on the electrical activity of giant axon of the squid.
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