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Physiological Research|August 6, 2003
Long release latencies are increased by acetylcholine at frog endplateD Samigullin, E A Bukharaeva, E Nikolsky, et al.
British Journal of Pharmacology|December 1, 1991
Depression of miniature endplate potential frequency by acetylcholine and its analogues in frogE E Nikolsky, E A Bukharaeva, E G Strunsky, et al.
European Journal of Pharmacology|September 22, 1994
The effect of acetylcholine and related drugs on currents at the frog motor nerve terminalD M Shakiryanova, A L Zefirov, E E Nikolsky, et al.
Physiological Research|January 19, 2000
Non-quantal acetylcholine release is increased after nitric oxide synthase inhibitionM R Mukhtarov, F Vyskocil, A K Urazaev, et al.
Pflugers Archiv : European Journal of Physiology|March 1, 1991
The dependence of non-quantal acetylcholine release on the choline-uptake system in the mouse diaphragmE E Nikolsky, V A Voronin, T I Oranska, et al.
Journal of Neurochemistry|June 15, 2007
Muscarinic M1 acetylcholine receptors regulate the non-quantal release of acetylcholine in the rat neuromuscular junction via NO-dependent mechanismArtem I Malomouzh, Marat R Mukhtarov, Eugen E Nikolsky, et al.
Physiological Research|November 6, 1998
Carnosine and other imidazole-containing compounds enhance the postdenervation depolarization of the rat diaphragm fibresA Kh Urazaev, N V Naumenko, E E Nikolsky, et al.
Physiological Research|October 11, 2003
Chloride cotransport in the membrane of earthworm body wall musclesE M Volkov, L F Nurullin, E Nikolsky, et al.
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