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Results 1 to 25 of 1425

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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

Neurotrophins and programmed cell death during cerebellar developmentSEGAL, R. A; RUA, L; SCHWARTZ, P et al.Advances in neurology. 1997, Vol 72, pp 79-86, issn 0091-3952Article

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

Regulators of cerebellar granule cell development act through specific signaling pathways : Building signaling connectionsVAUDRY, David; FALLUEL-MOREL, Anthony; LEUILLET, Sébastien et al.Science (Washington, D.C.). 2003, Vol 300, Num 5625, pp 1532-1534, issn 0036-8075, 3 p.Article

Immunocytochemical and electrophysiological differentiation of rat cerebellar granule cells in explant culturesHOCKBERGER, P. E; HSIU-YU TSENG; CONNOR, J. A et al.The Journal of neuroscience. 1987, Vol 7, Num 5, pp 1370-1383, issn 0270-6474Article

The effect of a neuron-specific antiserum, BPM, on the in vitro development of cerebellar granule cellsREGAN, C. M; MEIER, E; BALAZS, R et al.Cellular and molecular neurobiology. 1987, Vol 7, Num 4, pp 61-71, issn 0272-4340Article

A Golgi and morphometric study of the ectopic granule cells in the molecular layer of the rat cerebellumLAFARGA, M; BERCIANO, M. T.Brain research. 1985, Vol 345, Num 2, pp 398-401, issn 0006-8993Article

Opposing roles for E2F1 in survival and death of cerebellar granule neuronsZHONGMIN YUAN; LINGLING YAO; MINGCHANG LI et al.Neuroscience letters. 2011, Vol 499, Num 3, pp 164-169, issn 0304-3940, 6 p.Article

DYNEIN MOTOR CONTRIBUTES TO STRESS GRANULE DYNAMICS IN PRIMARY NEURONSTSAI, N.-P; TSUI, Y.-C; WEI, L.-N et al.Neuroscience. 2009, Vol 159, Num 2, pp 647-656, issn 0306-4522, 10 p.Article

The olfactory granule cell : From classical enigma to central role in olfactory processingSHEPHERD, Gordon M; CHEN, Wei R; WILLHITE, David et al.Brain research reviews. 2007, Vol 55, Num 2, pp 373-382, issn 0165-0173, 10 p.Article

Cannabinoid receptor agonists inhibit depolarization-induced calcium influx in cerebellar granule neuronsNOGUERON, M. Isabel; PORGILSSON, Bjorn; SCHNEIDER, Wendy E et al.Journal of neurochemistry. 2001, Vol 79, Num 2, pp 371-381, issn 0022-3042Article

More cerebellar granule cells following prenatal low-dose X-irradiationSCHMITZ, C; OTTO, U; KORR, H et al.Brain research. 2000, Vol 872, Num 1-2, pp 250-253, issn 0006-8993Article

The cells and molecules that make a cerebellumGOLDOWITZ, D; HAMRE, K.Trends in neurosciences (Regular edition). 1998, Vol 21, Num 9, pp 375-382, issn 0166-2236Article

Ischemia-induced death of astrocytes and neurons in primary culture : pitfalls in quantifying neuronal cell deathJUURLINK, B. H. J; HERTZ, L.Developmental brain research. 1993, Vol 71, Num 2, pp 239-246, issn 0165-3806Article

Stimulation of the N-methyl-D-aspartate receptor promotes the biochemical differentiation of cerebellar granule neurons and not astrocytesMORAN, J; PATEL, A. J.Brain research. 1989, Vol 486, Num 1, pp 15-25, issn 0006-8993, 11 p.Article

Depolarization- and transmitter-induced changes in intracellular Ca2+ of rat cerebellar granule cells in explant culturesCONNOR, J. A; HSIU-YU TSENG; HOCKBERGER, P. E et al.The Journal of neuroscience. 1987, Vol 7, Num 5, pp 1384-1400, issn 0270-6474Article

MODULATION OF NATIVE GABAA RECEPTOR ACTIVITY BY TRIAZOLO 1,5-BENZODIAZEPINESNIKAS, P; GATTA, E; CUPELLO, A et al.Neuroscience. 2013, Vol 243, pp 158-164, issn 0306-4522, 7 p.Article

ACTIVATION OF CEREBELLAR GRANULE CELLS GABAA RECEPTORS BY GUANIDINOACETATECUPELLO, A; BALESTRINO, M; GATTA, E et al.Neuroscience. 2008, Vol 152, Num 1, pp 65-69, issn 0306-4522, 5 p.Article

E2F1 is not essential for apoptosis induced by potassium deprivation in cerebellar granule neuronsZHONGMIN YUAN; YUPING MEI; JING ZHOU et al.Neuroscience letters. 2007, Vol 424, Num 3, pp 155-159, issn 0304-3940, 5 p.Article

Antiapoptotic effects of roscovitine in cerebellar granule cells deprived of serum and potassium: a cell cycle-related mechanismVERDAGUER, Ester; JORDA, Elvira G; CANUDAS, Anna M et al.Neurochemistry international. 2004, Vol 44, Num 4, pp 251-261, issn 0197-0186, 11 p.Article

Math 1 is essential for genesis of cerebellar granule neuronsBEN-ARIE, N; BELLEN, H. J; ARMSTRONG, D. L et al.Nature (London). 1997, Vol 390, Num 6656, pp 169-172, issn 0028-0836Article

The effect of X-radiation on cerebellar granule cells grown in culture ganglioside GM1 neuroprotective activityGUELMAN, L. R; ZIEHER, L. M; FISZMAN, M. L et al.Neurochemistry international. 1996, Vol 29, Num 5, pp 521-527, issn 0197-0186Article

Nitric oxide alters proenkephalin and prodynorphin gene expression in hippocampal granule cellsJOHNSTON, H. M; MORRIS, B. J.Neuroscience. 1994, Vol 61, Num 3, pp 435-439, issn 0306-4522Article

Reconstruction of hippocampal granule cell electrophysiology by computer simulationYUEN, G. L. F; DURAND, D.Neuroscience. 1991, Vol 41, Num 2-3, pp 411-423, issn 0306-4522Article

Cerebellar granule cells in culture: monosynaptic connections with Purkinje cells and ionic currentsHIRANO, T; KUBO, Y; WU, M. M et al.Proceedings of the National Academy of Sciences of the United States of America. 1986, Vol 83, Num 13, pp 4957-4961, issn 0027-8424Article

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