Greg Lnenicka

State University of New York, Albany, Albany, NY, United States 
"Greg Lnenicka"
Mean distance: 14.42 (cluster 6)
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Gertner DM, Desai S, Lnenicka GA. (2014) Synaptic excitation is regulated by the postsynaptic dSK channel at the Drosophila larval NMJ. Journal of Neurophysiology. 111: 2533-43
Hirsch HV, Lnenicka G, Possidente D, et al. (2012) Drosophila melanogaster as a model for lead neurotoxicology and toxicogenomics research. Frontiers in Genetics. 3: 68
Desai SA, Lnenicka GA. (2011) Characterization of postsynaptic Ca2+ signals at the Drosophila larval NMJ. Journal of Neurophysiology. 106: 710-21
He T, Lnenicka GA. (2011) Ca²+ buffering at a drosophila larval synaptic terminal. Synapse (New York, N.Y.). 65: 687-93
Tsurudome K, Tsang K, Liao EH, et al. (2010) The Drosophila miR-310 cluster negatively regulates synaptic strength at the neuromuscular junction. Neuron. 68: 879-93
He T, Hirsch HV, Ruden DM, et al. (2009) Chronic lead exposure alters presynaptic calcium regulation and synaptic facilitation in Drosophila larvae. Neurotoxicology. 30: 777-84
Levin ED, Aschner M, Heberlein U, et al. (2009) Genetic aspects of behavioral neurotoxicology. Neurotoxicology. 30: 741-53
Hirsch HV, Possidente D, Averill S, et al. (2009) Variations at a quantitative trait locus (QTL) affect development of behavior in lead-exposed Drosophila melanogaster. Neurotoxicology. 30: 305-11
He T, Singh V, Rumpal N, et al. (2009) Differences in Ca2+ regulation for high-output Is and low-output Ib motor terminals in Drosophila larvae. Neuroscience. 159: 1283-91
Harrisingh MC, Wu Y, Lnenicka GA, et al. (2007) Intracellular Ca2+ regulates free-running circadian clock oscillation in vivo. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 27: 12489-99
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