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Canadian Journal of Physiology and Pharmacology|January 1, 1987
Latency of transmitter release at crayfish motor nerve endings examined by intracellular depolarizationJ M Wojtowicz, I Parnas, H Parnas, et al.Journal of Neurophysiology|February 26, 1999
Simultaneous measurement of evoked release and [Ca2+]i in a crayfish release bouton reveals high affinity of release to Ca2+R Ravin, H Parnas, M E Spira, et al.Journal of Neurophysiology|April 11, 2003
Use of knockout mice reveals involvement of M2-muscarinic receptors in control of the kinetics of acetylcholine releaseI Slutsky, J Wess, J Gomeza, et al.Journal of Neurophysiology|February 11, 2005
Depolarization initiates phasic acetylcholine release by relief of a tonic block imposed by presynaptic M2 muscarinic receptorsH Parnas, I Slutsky, G Rashkovan, et al.Journal of Neurophysiology|June 9, 2006
Role of NSF in neurotransmitter release: a peptide microinjection study at the crayfish neuromuscular junctionI Parnas, G Rashkovan, V O'Connor, et al.The Journal of Experimental Biology|September 1, 1987
Strengthening of synaptic inputs after elimination of a single neurone innervating the same targetI ParnasJournal of Neurophysiology|December 1, 1996
Differential activation of two distinct mechanisms for presynaptic inhibition by a single inhibitory axonY Fischer, I ParnasThe Journal of Physiology|October 1, 1979
A mathematical model for conduction of action potentials along bifurcating axonsI Parnas, I SegevBiophysical Journal|January 1, 1983
Synaptic integration mechanisms. Theoretical and experimental investigation of temporal postsynaptic interactions between excitatory and inhibitory inputsI Segev, I ParnasJournal of Neurophysiology|April 1, 1996
Activation of GABAB receptors at individual release boutons of the crayfish opener neuromuscular junction produces presynaptic inhibitionY Fischer, I ParnasPageof 11