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The Journal of Physiology|March 1, 1992
Role of ATP-sensitive K+ channels during anoxia: major differences between rat (newborn and adult) and turtle neuronsC Jiang, Y Xia, G G HaddadPediatric Research|November 1, 1993
Sulfonylurea receptor expression in rat brain: effect of chronic hypoxia during developmentY Xia, D Eisenman, G G HaddadThe American Journal of Physiology|December 31, 1997
Effect of chronic hypoxia on glucose transporters in heart and skeletal muscle of immature and adult ratsY Xia, J B Warshaw, G G HaddadJournal of Neurophysiology|March 1, 1994
Functional properties of rat and human neocortical voltage-sensitive sodium currentsT R Cummins, Y Xia, G G HaddadBrain Research|March 27, 1995
Chronic hypoxia causes opposite effects on glucose transporter 1 mRNA in mature versus immature rat brainY Xia, J B Warshaw, G G HaddadProgress in Neurobiology|June 17, 2000
Mechanisms underlying hypoxia-induced neuronal apoptosisK J Banasiak, Y Xia, G G HaddadBrain Research. Molecular Brain Research|April 14, 2000
Increased neuronal excitability after long-term O(2) deprivation is mediated mainly by sodium channelsY Xia, M L Fung, J P O'Reilly, et al.Neuroscience|June 5, 2002
Na(+)/Ca(2+) exchanger expression in the developing rat cortexG T Gibney, J H Zhang, R M Douglas, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|April 6, 2000
Enhancing our understanding of the molecular responses to hypoxia in mammals using Drosophila melanogasterG G HaddadCurrent Opinion in Pulmonary Medicine|November 26, 1999
Use of genetic models in respiratory neurobiology and sleepG G HaddadPageof 100