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Experimental Physiology|February 7, 2001
The effect of carbachol and alpha-bungarotoxin on the frequency of miniature endplate potentials at the frog neuromuscular junctionE Bukharaeva, T Ipatova, E E Nikolsky, et al.Physiological Research|November 10, 2000
Cyclic AMP synchronizes evoked quantal release at frog neuromuscular junctionsE Bukcharaeva, D Samigullin, E E Nikolsky, et al.Journal of Neuroscience Research|January 1, 1984
Gangliosides' dual mode of action: a working hypothesisD Janigro, F Di Gregorio, F Vyskocil, et al.Proceedings of the National Academy of Sciences of the United States of America|May 1, 1985
Is an acetylcholine transport system responsible for nonquantal release of acetylcholine at the rodent myoneural junction?C Edwards, V Dolezal, S Tucek, et al.Physiological Research|February 19, 2005
Calcium dependence of uni-quantal release latencies and quantal content at mouse neuromuscular junctionD Samigullin, E A Bukharaeva, F Vyskocil, et al.Journal of Neurochemistry|March 1, 1992
Ouabain binding, ATP hydrolysis, and Na+,K(+)-pump activity during chemical modification of brain and muscle Na+,K(+)-ATPaseJ Teisinger, H Zemková, P Svoboda, et al.Neuroscience Research|August 26, 2000
Carbachol and acetylcholine delay the early postdenervation depolarization of muscle fibres through M1-cholinergic receptorsA Urazaev, N Naumenko, A Malomough, et al.The Journal of Physiology|June 15, 1994
Role of non-quantal acetylcholine release in surplus polarization of mouse diaphragm fibres at the endplate zoneE E Nikolsky, H Zemková, V A Voronin, et al.Neuroscience Letters|November 11, 1985
Cobalt ions block L-glutamate and L-aspartate-induced currents in cultured neurons from embryonic chick spinal cordL Vyklický, L Vyklický, V Vlachová, et al.Puerto Rico Health Sciences Journal|August 1, 1988
A possible role for the acetylcholine transport system in non-quantal release of acetylcholine at the rodent myoneural junctionC Edwards, V Dolezal, S Tucek, et al.Pageof 13