Alan R. Kay

University of Iowa, Iowa City, IA 
"Alan Kay"
Mean distance: 13.32 (cluster 6)
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Nydegger I, Rumschik SM, Zhao J, et al. (2012) Evidence for an extracellular zinc-veneer in rodent brains from experiments with Zn-ionophores and ZnT3 knockouts. Acs Chemical Neuroscience. 3: 761-6
Turner MH, Ullmann JF, Kay AR. (2012) A method for detecting molecular transport within the cerebral ventricles of live zebrafish (Danio rerio) larvae. The Journal of Physiology. 590: 2233-40
Nydegger I, Rumschik SM, Kay AR. (2010) Zinc is externalized rather than released during synaptic transmission. Acs Chemical Neuroscience. 1: 728-736
Rumschik SM, Nydegger I, Zhao J, et al. (2009) The interplay between inorganic phosphate and amino acids determines zinc solubility in brain slices. Journal of Neurochemistry. 108: 1300-8
Zhao J, Bertoglio BA, Devinney MJ, et al. (2009) The interaction of biological and noxious transition metals with the zinc probes FluoZin-3 and Newport Green. Analytical Biochemistry. 384: 34-41
Kay AR, Tóth K. (2008) Is zinc a neuromodulator? Science Signaling. 1: re3
Zhao J, Bertoglio BA, Gee KR, et al. (2008) The zinc indicator FluoZin-3 is not perturbed significantly by physiological levels of calcium or magnesium. Cell Calcium. 44: 422-6
Kay AR, Tóth K. (2006) Influence of location of a fluorescent zinc probe in brain slices on its response to synaptic activation. Journal of Neurophysiology. 95: 1949-56
Kay AR, Krupa DJ. (2001) Acute isolation of neurons from the mature mammalian central nervous system. Current Protocols in Neuroscience / Editorial Board, Jacqueline N. Crawley ... [Et Al.]. Unit 6.5
Snitsarev V, Budde T, Stricker TP, et al. (2001) Fluorescent detection of Zn(2+)-rich vesicles with Zinquin: mechanism of action in lipid environments. Biophysical Journal. 80: 1538-46
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