John Connor

University of New Mexico, Albuquerque, NM, United States 
"John Connor"
Mean distance: 12.8 (cluster 11)
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Paul S, Connor JA. (2010) NR2B-NMDA receptor-mediated increases in intracellular Ca2+ concentration regulate the tyrosine phosphatase, STEP, and ERK MAP kinase signaling. Journal of Neurochemistry. 114: 1107-18
Vander Jagt TA, Connor JA, Weiss JH, et al. (2009) Intracellular Zn2+ increases contribute to the progression of excitotoxic Ca2+ increases in apical dendrites of CA1 pyramidal neurons Neuroscience. 159: 104-114
Vander Jagt TA, Connor JA, Shuttleworth CW. (2008) Localized loss of Ca2+ homeostasis in neuronal dendrites is a downstream consequence of metabolic compromise during extended NMDA exposures. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 28: 5029-39
Blagoev KB, Mihaila B, Travis BJ, et al. (2007) Modelling the magnetic signature of neuronal tissue. Neuroimage. 37: 137-48
Chinopoulos C, Connor JA, Shuttleworth CW. (2007) Emergence of a spermine-sensitive, non-inactivating conductance in mature hippocampal CA1 pyramidal neurons upon reduction of extracellular Ca2+: dependence on intracellular Mg2+ and ATP. Neurochemistry International. 50: 148-58
Azimi-Zonooz A, Shuttleworth CW, Connor JA. (2006) GABAergic protection of hippocampal pyramidal neurons against glutamate insult: deficit in young animals compared to adults. Journal of Neurophysiology. 96: 299-308
Xing H, Azimi-Zonooz A, Shuttleworth CW, et al. (2004) Caffeine releasable stores of Ca2+ show depletion prior to the final steps in delayed CA1 neuronal death. Journal of Neurophysiology. 92: 2960-7
Connor J, Pozzo-Miller LD. (2003) Synaptically driven Ca2+ release in hippocampal neurons. Journal of Neurophysiology. 90: 3579; author reply 3
Shuttleworth CW, Brennan AM, Connor JA. (2003) NAD(P)H fluorescence imaging of postsynaptic neuronal activation in murine hippocampal slices. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 23: 3196-208
Zou B, Golarai G, Connor JA, et al. (2001) Neonatal exposure to a novel environment enhances the effects of corticosterone on neuronal excitability and plasticity in adult hippocampus. Brain Research. Developmental Brain Research. 130: 1-7
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