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Results 1 to 25 of 1923

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Speculations surrounding a spinal reflexDEBRUIN, Hubert; WINNIE FU; GALEA, Victoria et al.Journal of the neurological sciences. 2006, Vol 242, Num 1-2, pp 75-82, issn 0022-510X, 8 p.Article

Decrements in per pulse release of norepinephrine, antagonist potentiation of release and presynaptic receptor theoryKALSNER, Stanley; SYED AMIR ABDALI.Brain research bulletin. 2003, Vol 61, Num 2, pp 173-182, issn 0361-9230, 10 p.Article

PRESYNAPTIC INHIBITION IN THE MARINE MOLLUSK TRITONIA DIOMEDEASLAWSKY MT.1980; DISS. ABSTR. INT., SECT. B: SCI. ENG.; ISSN 0419-4217; USA; DA. 1980; VOL. 40; NO 11; PP. 5160; RESUME SEULEMENT;[; THESE PH. D./STANFORD UNIV. (USA)/1980/8011713]Thesis

P- and R-type Ca2+ channels regulating spinal glycinergic nerve terminalsNONAKA, Kiku; MURAYAMA, Nobuki; MAEDA, Megumi et al.Toxicon (Oxford). 2010, Vol 55, Num 7, pp 1283-1290, issn 0041-0101, 8 p.Article

Differential regulation of crossed cutaneous effects on the soleus H-reflex during standing and walking in humansSUZUKI, Shinya; NAKAJIMA, Tsuyoshi; MEZZARANE, Rinaldo A et al.Experimental brain research. 2014, Vol 232, Num 10, pp 3069-3078, issn 0014-4819, 10 p.Article

An emerging view of presynaptic structure from electron microscopic studiesSIKSOU, Léa; TRILLER, Antoine; MARTY, Serge et al.Journal of neurochemistry. 2009, Vol 108, Num 6, pp 1336-1342, issn 0022-3042, 7 p.Article

MODULATION OF GLYCINERGIC SYNAPTIC TRANSMISSION IN THE TRIGEMINAL AND HYPOGLOSSAL MOTOR NUCLEI BY THE NITRIC OXIDE―CYCLICGMP SIGNALING PATHWAYPOSE, I; SILVEIRA, V; DAMIAN, A et al.Neuroscience. 2014, Vol 267, pp 177-186, issn 0306-4522, 10 p.Article

POSTNATAL DEVELOPMENT OF PRESYNAPTIC TERMINALS IN THE GIGANTOCELLULAR TEGMENTAL FIELD (FTG) OF THE RATMILLER AJ; FRY G.1980; BRAIN RES.; NLD; DA. 1980; VOL. 188; NO 2; PP. 301-317; BIBL. 57 REF.Article

Presynaptic heteroreceptors in regulation of neuronal transmissionLADURON, P. M.Biochemical pharmacology. 1985, Vol 34, Num 4, pp 467-470, issn 0006-2952Article

Ketanserin alters [3H]Pserotonin uptake and release in rat hypothalamusOFFORD, S. J; WARWICK, R. O. JR.European journal of pharmacology. 1984, Vol 104, Num 3-4, pp 379-382, issn 0014-2999Article

Protein kinase C activation leading to protein F1 phosphorylation may regulate synaptic plasticity by presynaptic terminal growthROUTTENBERG, A; NELSON, R; LOVINGER, D et al.Behavioral and neural biology. 1985, Vol 44, Num 2, pp 186-200, issn 0163-1047Article

Identified interneurons produce both primary afferent depolarization and presynaptic inhibitionKIRK, M. D; WINE, J. J.Science (Washington, D.C.). 1984, Vol 225, Num 4664, pp 854-856, issn 0036-8075Article

Influence of neuronal uptake on the presynaptic α-adrenergic modulation of noradrenaline releaseENERO, M. A.Naunyn-Schmiedeberg's archives of pharmacology. 1984, Vol 328, Num 1, pp 38-40, issn 0028-1298Article

Pre-and postsynaptic actions of valproic acid at the frog neuromuscular junctionALKADHI, K. A; BANKS, F. W.Brain research. 1984, Vol 306, Num 1-2, pp 388-390, issn 0006-8993Article

Temporal depression of the soleus H-reflex during passive stretchROBERTSON, Christopher T; KITANO, Koichi; KOCEJA, David M et al.Experimental brain research. 2012, Vol 219, Num 2, pp 217-225, issn 0014-4819, 9 p.Article

Alteration of the purinergic modulation of enteric neurotransmission in the mouse ileum during chronic intestinal inflammationDE MAN, Joris G; SEERDEN, Tom C; DE WINTER, Benedicte Y et al.British journal of pharmacology. 2003, Vol 139, Num 1, pp 172-184, issn 0007-1188, 13 p.Article

The presynaptic modulation of corticostriatal afferents by μ-opioids is mediated by K+ conductancesBARRAL, Jaime; MENDOZA, Ernesto; GALARRAGA, Elvira et al.European journal of pharmacology. 2003, Vol 462, Num 1-3, pp 91-98, issn 0014-2999, 8 p.Article

Effects of hip joint angle changes on intersegmental spinal coupling in human spinal cord injuryKNIKOU, Maria.Experimental brain research. 2005, Vol 167, Num 3, pp 381-393, issn 0014-4819, 13 p.Article

Amphetamine-clonidine interaction on neurotransmission in the vas deferens of the ratFISZMAN, M. L; STEFANO, F. J. E.Naunyn-Schmiedeberg's archives of pharmacology. 1984, Vol 328, Num 2, pp 148-153, issn 0028-1298Article

Systems approach to explore components and interactions in the presynapseABUL-HUSN, Noura S; BUSHLIN, Ittai; MORON, José A et al.Proteomics (Weinheim. Print). 2009, Vol 9, Num 12, pp 3303-3315, issn 1615-9853, 13 p.Article

Electrical activity of mouse motor nerve terminalsKONISHI, T; SEARS, T. A.Proceedings of the Royal society of London. Series B. Biological sciences. 1984, Vol 222, Num 1226, pp 115-120, issn 0080-4649Article

Neuronal calcium sensor 1 and activity-dependent facilitation of P/Q-type calcium currents at presynaptic nerve terminalsTSUJIMOTO, Tetsuhiro; JEROMIN, Andreas; SAITOH, Naoto et al.Science (Washington, D.C.). 2002, Vol 295, Num 5563, pp 2276-2279, issn 0036-8075Article

A comparison of the potencies of various dopamine receptor agonists in models for pre- and postsynaptic receptor activityFEENSTRA, M. G. P; SUMNERS, C; GOEDEMOED, J. H et al.Naunyn-Schmiedeberg's archives of pharmacology. 1983, Vol 234, Num 2, pp 108-115, issn 0028-1298Article

Recent perspectives on the organization of central synapsesJONES, D. G.Anesthesia and analgesia. 1983, Vol 62, Num 12, pp 1100-1112, issn 0003-2999Article

WAYS TO DISCERN THE PRESYNAPTIC EFFECT OF DRUGS ON NEUROTRANSMITTER RELEASEPARNAS H; SEGEL LA.1982; J. THEOR. BIOL.; ISSN 0022-5193; GBR; DA. 1982; VOL. 94; NO 4; PP. 923-941; BIBL. 28 REF.Article

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