Stephen R. Young

Affiliations: 
SUNY Downstate, Lewiston, NY, United States 
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"Stephen Young"
Mean distance: 13.13 (cluster 6)
 
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Publications

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Zhao W, Chuang SC, Young SR, et al. (2015) Extracellular glutamate exposure facilitates group I mGluR-mediated epileptogenesis in the hippocampus. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 308-15
Young SR, Chuang SC, Zhao W, et al. (2013) Persistent receptor activity underlies group I mGluR-mediated cellular plasticity in CA3 neuron. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 2526-40
Bianchi R, Chuang SC, Zhao W, et al. (2009) Cellular plasticity for group I mGluR-mediated epileptogenesis. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 29: 3497-507
Young SR, Bianchi R, Wong RK. (2008) Signaling mechanisms underlying group I mGluR-induced persistent AHP suppression in CA3 hippocampal neurons. Journal of Neurophysiology. 99: 1105-18
Hamzei-Sichani F, Kamasawa N, Janssen WG, et al. (2007) Gap junctions on hippocampal mossy fiber axons demonstrated by thin-section electron microscopy and freeze fracture replica immunogold labeling. Proceedings of the National Academy of Sciences of the United States of America. 104: 12548-53
Young SR, Chuang SC, Wong RK. (2004) Modulation of afterpotentials and firing pattern in guinea pig CA3 neurones by group I metabotropic glutamate receptors. The Journal of Physiology. 554: 371-85
Chuang SC, Zhao W, Young SR, et al. (2002) Activation of group I mGluRs elicits different responses in murine CA1 and CA3 pyramidal cells. The Journal of Physiology. 541: 113-21
Young SR, Wong RK, Bianchi R. (2000) Simultaneous intracellular recording and calcium imaging in single neurons of hippocampal slices. Methods (San Diego, Calif.). 21: 373-83
Xiang Z, Hrabetova S, Moskowitz SI, et al. (2000) Long-term maintenance of mature hippocampal slices in vitro. Journal of Neuroscience Methods. 98: 145-54
Bianchi R, Young SR, Wong RK. (1999) Group I mGluR activation causes voltage-dependent and -independent Ca2+ rises in hippocampal pyramidal cells. Journal of Neurophysiology. 81: 2903-13
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