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Biophysical Journal|September 1, 1994
Diffusion cannot govern the discharge of neurotransmitter in fast synapsesR Khanin, H Parnas, L SegelBiological Cybernetics|January 1, 1995
Modulated excitability: a new way to obtain bursting neuronsE Sivan, L Segel, H 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 SegelThe Journal of Physiology|June 1, 1985
Dopaminergic modulation of neuromuscular transmission in the prawnM W Miller, H Parnas, I ParnasBiophysical Journal|February 1, 1997
A mechanism for discharge of charged excitatory neurotransmitterR Khanin, H Parnas, L SegelJournal of Theoretical Biology|May 22, 1990
Release kinetics as a tool to describe drug effects on neurotransmitter releaseC Lustig, H Parnas, L SegelNeuroscience|November 2, 2010
A novel, extremely fast, feedback inhibition of glutamate release in the crayfish neuromuscular junctionY M Kupchik, H Parnas, I ParnasThe Journal of Physiology|November 3, 2001
Presynaptic M(2) muscarinic receptors are involved in controlling the kinetics of ACh release at the frog neuromuscular junctionI Slutsky, I Silman, I Parnas, et al.The European Journal of Neuroscience|January 1, 1996
Glutamate depresses release by activating non-conventional glutamate receptors at crayfish nerve terminalsI Parnas, J Dudel, H Parnas, et al.The Journal of Physiology|November 1, 1990
Blockage of synaptic release by brief hyperpolarizing pulses in the neuromuscular junction of the crayfishH Arechiga, A Cannone, H Parnas, et al.Pageof 12