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1.
Miralles 3,4-Diaminopyridine-induced impairment in frog motor nerve terminal response to high frequency stimulation // Brain Res., 1998. Vol. 789, N 2.-С.239-244

2.
Graham William J. A recombinase paralog from the hyperthermophilic crenarchaeon Sulfolobus solfataricus enhances SsoRadA ssDNA binding and strand displacement // Gene, 2013. Vol. 515, N 1.-С.128-139

3.
Takikawa Actions of adenosine on spontaneous or evoked tramsmitter release at the frog neuromuscular junction // Neurosci. Res., 1990, Suppl. N11.-С.122

4.
Schaechter J.D. Activation of protein kinase C by arachidonic acid selectively enhances the phosphorylation of GAP-43 in nerve terminal membranes // J. Neurosci., 1993. Vol. 13, N 10.-С.4361-4371

5.
Stevens Charles F. Changes in reliability of synaptic function as a mechanism for plasticity // Nature. -Gr. Brit., 1994. Vol. 371, N 6499.-С.704-707

6.
Characterization of a novel presynaptic protein from rat brain. Molecular cloning and immunohistochemical localization // Gotting. Neurobiol. Rept., 1995. Vol. 2, N 1.-С.621

7.
Crystal structure function relationship of neurotoxic Phospholipase A[2] from Daboia russelli pulchella at 2.45A // J. Biosci., 1999. Vol. 24, Suppl. 1.-С.39

8.
Tang Crystal structure of agkistrodotoxin, a presynaptic neurotoxin // J. Toxicol. Toxin Rev., 1998. Vol. 17, N 4.-С.548

9.
Tang Dopamine D[2] and D[3] receptors inhibit dopamine release // J. Pharmacol. and Exp. Ther., 1994. Vol. 270, N 2.-С.475-479

10.
Cattaert D. Electrophysiological and pharmacological evidence for a glytamatergic presynaptic feedback control of primary afferents by motoneurons in the crayfish Procambarus clarkii, in vitro // J. Physiol. Proc., 1995, N 483.-С.187

11.
Cattaert D. Electrophysiological and pharmacological evidence for a glytamatergic presynaptic feedback control of primary afferents by motoneurons in the crayfish Procambarus clarkii, in vitro // J. Physiol. Proc., 1995, N 483.-С.187

12.
Boer G.J. Functional significance of neurotransmitteer/modulator receptors in the ontogeny of the brain // Fundam. and clin. pharmacol., 1991. Vol. 5, N 9.-С.809

13.
Genetica molecolare della malattia di Parkinson // G. neuropsicofarmacol., 1998. Vol. 20, N 3.-С.67-74

14.
Inactivation of presynaptic calcium current contributes to synaptic depression at a fast central synapse // Neuron, 1998. Vol. 20, N 4.-С.797-807

15.
Qian Inhibition of synaptic transmission by neuropeptide Y in rat hippocampal area CA1: Modulation of presynaptic Ca{2+} entry // J. Neurosci., 1997. Vol. 17, N 21.-С.8169-8177

16.
Kamiya Kainate receptor-mediated inhibition of presynaptic Ca{2+} influx and EPSP in area CA1 of the rat hippocampus // J. Physiol., 1998. Vol. 509, N 3.-С.833-845

17.
Ivancheva Chr. Met-enkephalin-dependent nitrergically mediated relaxation in the guinea pig ileum // Meth. and Find. Exp. and Clin. Pharmacol., 1996. Vol. 18, N 8.-С.521-525

18.
Ivancheva Chr. Met-enkephalin-dependent nitrergically mediated relaxation in the guinea pig ileum // Meth. and Find. Exp. and Clin. Pharmacol., 1996. Vol. 18, N 8.-С.521-525

19.
Neurosecretory cell-based biosensor: Monitoring secretion of adrenal chromaffin cells by local extracellular acidification using light-addressable potentiometric // Biosens. and Bioelectron., 2012. Vol. 35, N 1.-С.421-424

20.
Neurosecretory cell-based biosensor: Monitoring secretion of adrenal chromaffin cells by local extracellular acidification using light-addressable potentiometric // Biosens. and Bioelectron., 2012. Vol. 35, N 1.-С.421-424

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