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The Journal of Physiology|November 20, 1997
Voltage-dependent interaction between the muscarinic ACh receptor and proteins of the exocytic machineryM Linial, N Ilouz, H Parnas
Pflugers Archiv : European Journal of Physiology|July 1, 1984
Excitability and depolarization-release characteristics of excitatory nerve terminals in a tail muscle of spiny lobsterJ Dudel, I Parnas, I Cohen, et al.
Journal of Neurophysiology|September 9, 2000
Novel mechanism for presynaptic inhibition: GABA(A) receptors affect the release machineryI Parnas, G Rashkovan, R Ravin, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|July 1, 1984
Strengthening of synaptic contacts of an excitatory axon on elimination of a second excitatory axon innervating the same targetI Parnas, J Dudel, I Cohen, et al.
Journal of Neurophysiology|December 1, 1980
Mechanism of long-lasting synaptic inhibition in Aplysia neuron R15W B Adams, I Parnas, I B Levitan
The Journal of Physiology|May 1, 1982
Physiological responses, receptive fields and terminal arborizations of nociceptive cells in the leechS E Blackshaw, J G Nicholls, I Parnas
Bulletin of Mathematical Biology|August 12, 2000
Theory for the feedback inhibition of fast release of neurotransmitterK Yusim, H Parnas, L A Segel
Journal of Theoretical Biology|January 23, 1989
Neurotransmitter release: development of a theory for total release based on kineticsC Lustig, H Parnas, L A Segel
Bulletin of Mathematical Biology|December 6, 2001
One-vesicle hypothesis for neurotransmitter release: a possible molecular mechanismK Yusim, H Parnas, L A Segel
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