Published in J Physiol on April 01, 1979
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The temporal and steady-state relationships between activation of the sodium conductance and movement of the gating particles in the squid giant axon. J Physiol (1976) 3.27
Voltage clamp of the Aplysia giant neurone: early sodium and calcium currents. J Physiol (1970) 3.11
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Properties of a calcium channel in snail neurones. Nature (1974) 2.25
Two components of the calcium current in the egg cell membrane of the tunicate. J Physiol (1976) 2.22
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Gating currents associated with sodium and calcium currents in an Aplysia neuron. Science (1976) 1.35
Ionic currents in response to membrane depolarization in an Aplysia neurone. J Physiol (1979) 1.34
Synaptic transfer at a vertebrate central nervous system synapse. J Physiol (1975) 1.31
Voltage-dependent changes in the permeability of nerve membranes to calcium and other divalent cations. Philos Trans R Soc Lond B Biol Sci (1975) 1.28
Lipid composition of the nervous tissue of the invertebrates Aplysia kurodai (gastropod) and Cambarus clarki (arthropod). Biochim Biophys Acta (1973) 0.83
Capacitance of the surface and transverse tubular membrane of frog sartorius muscle fibers. J Gen Physiol (1969) 5.50
Ionic conductances of the surface and transverse tubular membranes of frog sartorius fibers. J Gen Physiol (1969) 5.45
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The permeability of endplate channels to monovalent and divalent metal cations. J Gen Physiol (1980) 4.72
Action potentials without contraction in frog skeletal muscle fibers with disrupted transverse tubules. Science (1967) 4.16
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Origins of skeletal pain: sensory and sympathetic innervation of the mouse femur. Neuroscience (2002) 2.57
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Transmitter release at the squid giant synapse in the presence of tetrodotoxin. Nature (1966) 2.30
Effects of permeant monovalent cations on end-plate channels. J Physiol (1979) 2.25
Miniature end-plate currents and potentials generated by quanta of acetylcholine in glycerol-treated toad sartorius fibres. J Physiol (1972) 2.24
Competition between sodium and calcium ions in transmitter release at mammalian neuromuscular junctions. J Physiol (1966) 2.19
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Block of endplate channels by permeant cations in frog skeletal muscle. J Gen Physiol (1981) 2.00
A persistent sodium current in rat ventricular myocytes. J Physiol (1992) 1.95
Effects of some aliphatic alcohols on the conductance change caused by a quantum of acetylcholine at the toad end-plate. J Physiol (1975) 1.92
Electrical properties of toad sartorius muscle fibres in summer and winter. J Physiol (1973) 1.90
Phasic secretion of acetylcholine at a mammalian neuromuscular junction. J Physiol (1980) 1.90
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Inhibitory post-synaptic currents in rat hippocampal CA1 neurones. J Physiol (1984) 1.79
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The sodium current underlying action potentials in guinea pig hippocampal CA1 neurons. J Gen Physiol (1988) 1.71
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Endplate currents are shortened by octanol: possible role of membrane lipid. Life Sci (1974) 1.36
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Ionic currents in response to membrane depolarization in an Aplysia neurone. J Physiol (1979) 1.34
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The inhibitory effect of manganese on transmitter release at the neuromuscular junction of the toad. Br J Pharmacol (1973) 1.23
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