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Results 21-30 of 35 (Search time: 0.001 seconds).
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First PublishedTitleAuthor(s)Type
Dec-2007The regulation of M1 muscarinic acetylcholine receptor desensitization by synaptic activity in cultured hippocampal neurons.Willets, JM; Nelson, CP; Nahorski, SR; Challiss, RAJournal Article
15-Sep-2006Glucose reduces endothelin inhibition of voltage-gated potassium channels in rat arterial smooth muscle cells.Rainbow, RD; Hardy, ME; Standen, NB; Davies, NWJournal Article
Apr-2004Functional regulation of P2X6 receptors by N-linked glycosylation: identification of a novel alpha beta-methylene ATP-sensitive phenotype.Jones, CA; Vial, C; Sellers, LA; Humphrey, PP; Evans, RJ; Chessell, IPJournal Article
Aug-2002Detecting synaptic connections in the medial nucleus of the trapezoid body using calcium imaging.Billups, B; Wong, AY; Forsythe, IDJournal Article
Jan-2009Implication of the JNK pathway in a rat model of Huntington's disease.Perrin, V; Dufour, N; Raoul, C; Hassig, R; Brouillet, E; Aebischer, P; Luthi-Carter, R; Déglon, NJournal Article
Mar-2009Sustained effects of nonallele-specific Huntingtin silencing.Drouet, V; Perrin, V; Hassig, R; Dufour, N; Auregan, G; Alves, S; Bonvento, G; Brouillet, E; Luthi-Carter, R; Hantraye, P; Déglon, NJournal Article
1-Aug-2005Role of mitochondrial re-energization and Ca2+ influx in reperfusion injury of metabolically inhibited cardiac myocytes.Rodrigo, GC; Standen, NBJournal Article
15-Feb-2004Diazoxide causes early activation of cardiac sarcolemmal KATP channels during metabolic inhibition by an indirect mechanism.Rodrigo, GC; Davies, NW; Standen, NBJournal Article
Sep-2005Muscarinic acetylcholine receptor activation enhances hippocampal neuron excitability and potentiates synaptically evoked Ca(2+) signals via phosphatidylinositol 4,5-bisphosphate depletion.Young, KW; Billups, D; Nelson, CP; Johnston, N; Willets, JM; Schell, MJ; Challiss, RA; Nahorski, SRJournal Article
24-Sep-2008Dysregulation of gene expression in primary neuron models of Huntington's disease shows that polyglutamine-related effects on the striatal transcriptome may not be dependent on brain circuitry.Runne, H; Régulier, E; Kuhn, A; Zala, D; Gokce, O; Perrin, V; Sick, B; Aebischer, P; Déglon, N; Luthi-Carter, RJournal Article