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Repulsive guidance molecule a regulates hippocampal mossy fiber branching in vitroSHIBATA, Kazuki; NAKAHARA, Soichiro; SHIMIZU, Emi et al.Neuroreport (Oxford). 2013, Vol 24, Num 11, pp 609-615, issn 0959-4965, 7 p.Article

Reexamination of the role of hyperpolarization-activated cation channels in short- and long-term plasticity at hippocampal mossy fiber synapsesHUANG, Chiung-Chun; HSU, Kuei-Sen.Neuropharmacology. 2003, Vol 44, Num 7, pp 968-981, issn 0028-3908, 14 p.Article

TEA-induced long-term potentiation at hippocampal mossy fiber-CA3 synapses : Characteristics of its induction and expressionSUZUKI, Etsuko; OKADA, Takashi.Brain research. 2009, Vol 1247, pp 21-27, issn 0006-8993, 7 p.Article

MATURATION OF EVOKED MOSSY FIBER IMPUT TO RAT CEREBELLAR PURKINJE CELLS. II.PURO DG; WOODWARD DJ.1977; EXPER. BRAIN RES.; GERM.; DA. 1977; VOL. 28; NO 3-4; PP. 427-441; BIBL. 1 P. 1/2Article

THE IDENTIFICATION OF MOSSY FIBRES AND THEIR CELLS OF ORIGIN IN THE NORMAL AND LURCHER MUTANT MOUSE.CADDY KWT; MARTIN MR; BISCOE TJ et al.1977; J. NEUROL. SCI.; NETHERL.; DA. 1977; VOL. 34; NO 1; PP. 121-129; BIBL. 18 REF.Article

Hippocampal mossy fiber sprouting induced by forced and voluntary physical exerciseTOSCANO-SILVA, Michelle; GOMES DA SILVA, Sérgio; SCORZA, Fulvio Alexandre et al.Physiology & behavior. 2010, Vol 101, Num 2, pp 302-308, issn 0031-9384, 7 p.Article

Zinc transporter 3 immunohistochemical tracing of sprouting mossy fibresCHI, Zhi-Hong; XIN WANG; CAI, Ji-Qun et al.Neurochemistry international. 2008, Vol 52, Num 7, pp 1305-1309, issn 0197-0186, 5 p.Article

Neuropeptide Y in the recurrent mossy fiber pathwayNADLER, J. Victor; BIN TU; TIMOFEEVA, Olga et al.Peptides (New York, NY. 1980). 2007, Vol 28, Num 2, pp 357-364, issn 0196-9781, 8 p.Conference Paper

Fluorescence imaging study of extracellular zinc at the hippocampal mossy fiber synapseBASTIAN, Chinthasagar; LI, Yang V.Neuroscience letters. 2007, Vol 419, Num 2, pp 119-124, issn 0304-3940, 6 p.Article

WHAT IS THE MAMMALIAN DENTATE GYRUS GOOD FOR?TREVES, A; TASHIRO, A; WITTER, M. P et al.Neuroscience. 2008, Vol 154, Num 4, pp 1155-1172, issn 0306-4522, 18 p.Article

Antiphasic purkinje cell responses in mouse uvula-nodulus are sensitive to static roll-tilt and topographically organizedYAKHNITSA, V; BARMACK, N. H.Neuroscience. 2006, Vol 143, Num 2, pp 615-626, issn 0306-4522, 12 p.Article

DISTRIBUTION OF GRANULE CELLS PROJECTING TO FOCAL PURKINJE CELLS IN MOUSE UVULA-NODULUSBARMACK, N. H; YAKHNITSA, V.Neuroscience. 2008, Vol 156, Num 1, pp 216-221, issn 0306-4522, 6 p.Article

Ultrastructural quantification of glutamate receptors at excitatory synapses in hippocampus of synapsin I+II double knock-out miceGYLTERUD OWE, S; BOGEN, I. L; WALAAS, S. I et al.Neuroscience. 2005, Vol 136, Num 3, pp 769-777, issn 0306-4522, 9 p.Article

HIPPOCAMPAL MOSSY FIBER SYNAPTIC TRANSMISSION AND ITS MODULATIONKOBAYASHI, Katsunori.Vitamins and hormones. 2010, Vol 82, pp 65-85, issn 0083-6729, 21 p.Article

Voltage-clamp analysis of mossy fiber synaptic input to hippocampal neuronsBROWN, T. H; JOHNSTON, D.Journal of neurophysiology. 1983, Vol 50, Num 2, pp 487-507, issn 0022-3077Article

Reliable control of spike rate and spike timing by rapid input transients in cerebellar stellate cellsSUTER, K. J; JAEGER, D.Neuroscience. 2004, Vol 124, Num 2, pp 305-317, issn 0306-4522, 13 p.Article

SAGITTAL ORGANIZATION OF MOSSY FIBER TERMINAL SYSTEMS IN THE CEREBELLUM OF THE RAT. A GOLGI STUDY.SCHEIBEL AB.1977; EXPER. NEUROL.; U.S.A.; DA. 1977; VOL. 57; NO 3; PP. 1067-1070; BIBL. 10 REF.Article

THE EFFECTS OF DIFFERENT METHODS OF FIXATION ON CENTRAL NERVOUS SYSTEM SYNAPTIC PINOCYTOTIC VESICLES.PAULA BARBOSA M; SOBRINHO SIMOES MA; GRAY EG et al.1977; CELL TISSUE RES.; GERM.; DA. 1977; VOL. 178; NO 3; PP. 323-332; BIBL. 19 REF.Article

SPONTANEOUS ACTIVITY OF THE PURKINJE CELLS IN THE PIGEON CEREBELLUM.BELCARI P; FRANCESCONI A; MAIOLI C et al.1977; PFLUEGERS ARCH.; DTSCH.; DA. 1977; VOL. 371; NO 1-2; PP. 147-154; BIBL. 21 REF.Article

TIME DEPENDENCE OF TERMINAL DEGENERATION IN SPINOCEREBELLAR MOSSY FIBER ROSETTES IN THE CHICKEN AND THE APPLICATION OF TERMINAL DEGENERATION IN SUCCESSIVE DEGENERATION EXPERIMENTS.VIELVOYE GJ; VOOGD J.1977; J. COMP. NEUROL.; U.S.A.; DA. 1977; VOL. 175; NO 2; PP. 233-242; BIBL. 1 P.Article

Persistent zinc depletion in the mossy fiber terminals in the intrahippocampal kainate mouse model of mesial temporal lobe epilepsyMITSUYA, Koichi; NITTA, Naoki; SUZUKI, Fumio et al.Epilepsia (Copenhagen). 2009, Vol 50, Num 8, pp 1979-1990, issn 0013-9580, 12 p.Article

Mesial temporal lobe epilepsy : Clinical and neuropathologic findings of familial and sporadic formsANDRADE-VALENCA, Luciana Patriziaa; MORAES VALENCA, Marcelo; RODRIGUES VELASCO, Tonicarlo et al.Epilepsia (Copenhagen). 2008, Vol 49, Num 6, pp 1046-1054, issn 0013-9580, 9 p.Article

Landmark-based but not vestibular-based orientation elicits mossy fiber synaptogenesis in the mouse hippocampusMIDDEI, S; VETERE, G; SGOBIO, C et al.Neurobiology of learning and memory (Print). 2007, Vol 87, Num 2, pp 174-180, issn 1074-7427, 7 p.Article

Role of inositol 1, 4, 5-trisphosphate receptors in the postsynaptic expression of guinea pig hippocampal mossy fiber depotentiationYAMAZAKI, Yoshihiko; SUGIHARA, Toshimichi; GOTO, Jun-Ichi et al.Brain research. 2011, Vol 1387, pp 19-28, issn 0006-8993, 10 p.Article

Measurement of presynaptic zinc changes in hippocampal mossy fibersQUINTA-FERREIRA, M. E; MATIAS, C. M; ARIF, M et al.Brain research. 2004, Vol 1026, Num 1, pp 1-10, issn 0006-8993, 10 p.Article

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