Jeffrey L. Barker

Affiliations: 
National Institutes of Health, Bethesda, MD 
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"Jeffrey Barker"
Mean distance: 12.86 (cluster 11)
 
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Publications

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Ma W, Fitzgerald W, Liu QY, et al. (2004) CNS stem and progenitor cell differentiation into functional neuronal circuits in three-dimensional collagen gels. Experimental Neurology. 190: 276-88
Liu QY, Chang YH, Schaffner AE, et al. (2002) Allopregnanolone activates GABA(A) receptor/Cl(-) channels in a multiphasic manner in embryonic rat hippocampal neurons. Journal of Neurophysiology. 88: 1147-58
Maric D, Liu QY, Maric I, et al. (2001) GABA expression dominates neuronal lineage progression in the embryonic rat neocortex and facilitates neurite outgrowth via GABA(A) autoreceptor/Cl- channels. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 21: 2343-60
Liu QY, Schaffner AE, Chang YH, et al. (2000) Persistent activation of GABA(A) receptor/Cl(-) channels by astrocyte-derived GABA in cultured embryonic rat hippocampal neurons. Journal of Neurophysiology. 84: 1392-403
Maric D, Liu QY, Grant GM, et al. (2000) Functional ionotropic glutamate receptors emerge during terminal cell division and early neuronal differentiation of rat neuroepithelial cells. Journal of Neuroscience Research. 61: 652-62
Maric D, Maric I, Chang YH, et al. (2000) Stereotypical physiological properties emerge during early neuronal and glial lineage development in the embryonic rat neocortex. Cerebral Cortex (New York, N.Y. : 1991). 10: 729-47
Vautrin J, Maric D, Sukhareva M, et al. (2000) Surface-accessible GABA supports tonic and quantal synaptic transmission. Synapse (New York, N.Y.). 37: 38-55
Liu QY, Coulombe M, Dumm J, et al. (2000) Synaptic connectivity in hippocampal neuronal networks cultured on micropatterned surfaces. Brain Research. Developmental Brain Research. 120: 223-31
Kao WY, Liu QY, Ma W, et al. (1999) Inhibition of spontaneous GABAergic transmission by trimethylolpropane phosphate. Neurotoxicology. 20: 843-9
Li YX, Schaffner AE, Barker JL. (1999) Astrocytes regulate the developmental appearance of GABAergic and glutamatergic postsynaptic currents in cultured embryonic rat spinal neurons. The European Journal of Neuroscience. 11: 2537-51
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