Liana Artinian, Ph.D.

Affiliations: 
2001 University of Illinois, Urbana-Champaign, Urbana-Champaign, IL 
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"Liana Artinian"
Mean distance: 17.58 (cluster 32)
 

Parents

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Martha Ulbrick Gillette grad student 2001 UIUC
 (Cholinergic regulation of circadian rhythms in the SCN: Characterization of signaling mechanisms and the role of intracellular calcium in the directionality of clock resetting.)
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Publications

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Thomas MA, Cui X, Artinian LR, et al. (2023) Crosstalk between Gut Sensory Ghrelin Signaling and Adipose Tissue Sympathetic Outflow Regulates Metabolic Homeostasis. Biorxiv : the Preprint Server For Biology
Smith CL, Abdallah S, Wong YY, et al. (2017) Evolutionary insights into T-type Ca(2+) channel structure, function, and ion selectivity from the Trichoplax adhaerens homologue. The Journal of General Physiology
Estes S, Artinian L, Rehder V. (2016) Modulation of growth cone filopodial length by carbon monoxide. Developmental Neurobiology
Estes S, Zhong LR, Artinian L, et al. (2015) Regulation of electrical activity and neuronal excitability in Helisoma trivolvis by carbon monoxide. Neuroscience
Zha L, Li F, Wu R, et al. (2015) The Histone Demethylase UTX Promotes Brown Adipocyte Thermogenic Program Via Coordinated Regulation of H3K27 Demethylation and Acetylation. The Journal of Biological Chemistry
Zhong LR, Estes S, Artinian L, et al. (2015) Cell-specific regulation of neuronal activity by endogenous production of nitric oxide. The European Journal of Neuroscience. 41: 1013-24
Estes S, Zhong LR, Artinian L, et al. (2015) The role of action potentials in determining neuron-type-specific responses to nitric oxide. Developmental Neurobiology. 75: 435-51
Zhong LR, Estes S, Artinian L, et al. (2013) Nitric oxide regulates neuronal activity via calcium-activated potassium channels. Plos One. 8: e78727
Zhong LR, Estes S, Artinian L, et al. (2013) Acetylcholine elongates neuronal growth cone filopodia via activation of nicotinic acetylcholine receptors. Developmental Neurobiology. 73: 487-501
Zhong LR, Artinian L, Rehder V. (2013) Dopamine suppresses neuronal activity of Helisoma B5 neurons via a D2-like receptor, activating PLC and K channels. Neuroscience. 228: 109-19
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