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The 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.Trends in Neurosciences|February 1, 2000
Autoreceptors, membrane potential and the regulation of transmitter releaseH Parnas, L Segel, J Dudel, 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.Proceedings of the National Academy of Sciences of the United States of America|November 22, 1994
Glutamate and N-methyl-D-aspartate affect release from crayfish axon terminals in a voltage-dependent mannerH Parnas, I Parnas, R Ravin, et al.Journal of Neurophysiology|June 16, 1999
Partial uncoupling of neurotransmitter release from [Ca2+]i by membrane hyperpolarizationR Ravin, H Parnas, M E Spira, et al.The Journal of Physiology|June 1, 1997
Simultaneous measurement of intracellular Ca2+ and asynchronous transmitter release from the same crayfish boutonR Ravin, M E Spira, H Parnas, et al.Journal of Neurophysiology|December 24, 1998
Functional and immunocytochemical identification of glutamate autoreceptors of an NMDA type in crayfish neuromuscular junctionN Feinstein, D Parnas, H Parnas, et al.Neuroscience Letters|July 19, 1988
Long-term facilitation of synaptic transmission demonstrated with macro-patch recording at the crayfish neuromuscular junctionJ M Wojtowicz, I Parnas, H Parnas, et al.The Journal of Physiology|February 1, 1987
Quantal currents evoked by graded intracellular depolarization of crayfish motor axon terminalsH L Atwood, H Parnas, I Parnas, et al.Pageof 11