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Pflugers Archiv : European Journal of Physiology|February 1, 1986
Neurotransmitter release and its facilitation in crayfish. VIII. Modulation of release by hyperpolarizing pulsesI Parnas, H Parnas, J DudelJournal of Neurophysiology|July 19, 2000
On the mechanism of desensitization in quisqualate-type glutamate channelsO Tour, H Parnas, I ParnasBulletin of Mathematical Biology|September 22, 2007
Theory of fast neurotransmitter release control based on voltage-dependent interaction between autoreceptors and proteins of the exocytotic machineryK Yusim, H Parnas, L SegelNeuroscience Letters|March 10, 1981
The effect of magnesium on the time course of facilitation at the crayfish neuromuscular junctionJ Dudel, H Parnas, I ParnasBulletin of Mathematical Biology|November 1, 1996
Parallel computation enables precise description of Ca2+ distribution in nerve terminalsS Aharon, M Bercovier, H ParnasBulletin of Mathematical Biology|March 1, 1995
Neuronal growth via hybrid system of self-growing and diffusion based grammar rules: IA Kalay, H Parnas, E ShamirPflugers Archiv : European Journal of Physiology|September 1, 1983
Neurotransmitter release and its facilitation in crayfish muscle. VI. Release determined by both, intracellular calcium concentration and depolarization of the nerve terminalJ Dudel, I Parnas, H ParnasJournal of Theoretical Biology|April 21, 1986
A new method for determining co-operativity in neurotransmitter releaseH Parnas, I Parnas, L SegelBiophysical Journal|May 1, 1989
Effect of Ca2+ diffusion on the time course of neurotransmitter releaseH Parnas, G Hovav, I ParnasBiophysical Journal|April 17, 1998
Depolarization increases the single-channel conductance and the open probability of crayfish glutamate channelsO Tour, H Parnas, I ParnasPageof 11