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Brain Research. Developmental Brain Research|September 8, 2004
Expression of Mcl-1 in cerebellar granule neurons is regulated by IGF-I in a developmentally specific fashionJihui Zhang, A Joseph D'ErcoleJournal of Neuroscience Research|November 19, 2005
Insulin-like growth factor actions during development of neural stem cells and progenitors in the central nervous systemPing Ye, A Joseph D'ErcoleEndocrinology|August 9, 2008
Expanding the mind: insulin-like growth factor I and brain developmentA Joseph D'Ercole, Ping YeEndocrinology|August 29, 2006
Insulin-like growth factor-I stimulates histone H3 and H4 acetylation in the brain in vivoLiou Y Sun, A Joseph D'ErcoleJournal of Neuroscience Research|February 7, 2007
Insulin-like growth factor-I ameliorates demyelination induced by tumor necrosis factor-alpha in transgenic micePing Ye, George Kollias, A Joseph D'ErcoleThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|June 14, 2003
Mouse NG2+ oligodendrocyte precursors express mRNA for proteolipid protein but not its DM-20 variant: a study of laser microdissection-captured NG2+ cellsPing Ye, Robert Bagnell, A Joseph D'ErcoleThe Journal of Comparative Neurology|August 6, 2003
Increased expression of insulin-like growth factor I augments the progressive phase of synaptogenesis without preventing synapse elimination in the hypoglossal nucleusJohn Robert O'Kusky, Ping Ye, A Joseph D'ErcoleNeuropeptides|October 3, 2002
Mutant mouse models of insulin-like growth factor actions in the central nervous systemA Joseph D'Ercole, Ping Ye, John R O'KuskyBrain Research. Developmental Brain Research|February 15, 2005
Increased expression of insulin-like growth factor-I (IGF-I) during embryonic development produces neocortical overgrowth with differentially greater effects on specific cytoarchitectonic areas and cortical layersRebecca D Hodge, A Joseph D'Ercole, John R O'KuskyThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 13, 2004
Insulin-like growth factor-I accelerates the cell cycle by decreasing G1 phase length and increases cell cycle reentry in the embryonic cerebral cortexRebecca D Hodge, A Joseph D'Ercole, John R O'KuskyPageof 6