Kenneth Campbell

Developmental biology University of Cincinnati, Cincinnati, OH 
Forebrain development
"Kenneth Campbell"
Mean distance: 15.36 (cluster 11)
Cross-listing: DevTree

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Tinterri A, Menardy F, Diana MA, et al. (2018) Active intermixing of indirect and direct neurons builds the striatal mosaic. Nature Communications. 9: 4725
Desmaris E, Keruzore M, Saulnier A, et al. (2018) DMRT5, DMRT3 and EMX2 cooperatively repress at the pallium-subpallium boundary to maintain cortical identity in dorsal telencephalic progenitors. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Chapman H, Riesenberg A, Ehrman LA, et al. (2018) Gsx transcription factors control neuronal versus glial specification in ventricular zone progenitors of the mouse lateral ganglionic eminence. Developmental Biology
Qin S, Ware SM, Waclaw RR, et al. (2017) Septal contributions to olfactory bulb interneuron diversity in the embryonic mouse telencephalon: role of the homeobox gene Gsx2. Neural Development. 12: 13
Merchan-Sala P, Nardini D, Waclaw RR, et al. (2017) Selective neuronal expression of the SoxE factor, Sox8, in direct pathway striatal projection neurons of the developing mouse brain. The Journal of Comparative Neurology
Qin S, Madhavan M, Waclaw RR, et al. (2016) Characterization of a new Gsx2-Cre line in the developing mouse telencephalon. Genesis (New York, N.Y. : 2000)
Seto Y, Nakatani T, Masuyama N, et al. (2014) Temporal identity transition from Purkinje cell progenitors to GABAergic interneuron progenitors in the cerebellum. Nature Communications. 5: 3337
Dunty WC, Kennedy MW, Chalamalasetty RB, et al. (2014) Transcriptional profiling of Wnt3a mutants identifies Sp transcription factors as essential effectors of the Wnt/β-catenin pathway in neuromesodermal stem cells. Plos One. 9: e87018
Borello U, Madhavan M, Vilinsky I, et al. (2014) Sp8 and COUP-TF1 reciprocally regulate patterning and Fgf signaling in cortical progenitors. Cerebral Cortex (New York, N.Y. : 1991). 24: 1409-21
Ma T, Wang C, Wang L, et al. (2013) Subcortical origins of human and monkey neocortical interneurons. Nature Neuroscience. 16: 1588-97
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