Carlos Paladini

The University of Texas at San Antonio, San Antonio, TX, United States 
Mesolimbic Physiology
"Carlos Paladini"
Mean distance: 14.12 (cluster 6)
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Ford C, Paladini C. (2019) Decision letter: Synapse-specific opioid modulation of thalamo-cortico-striatal circuits Elife
Grow DA, Simmons DV, Gomez JA, et al. (2016) Differentiation and Characterization of Dopaminergic Neurons From Baboon Induced Pluripotent Stem Cells. Stem Cells Translational Medicine
Goertz RB, Wanat MJ, Gomez JA, et al. (2015) Cocaine increases dopaminergic neuron and motor activity via midbrain α1 adrenergic signaling. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology. 40: 1151-62
Gaval-Cruz M, Goertz RB, Puttick DJ, et al. (2014) Chronic loss of noradrenergic tone produces β-arrestin2-mediated cocaine hypersensitivity and alters cellular D2 responses in the nucleus accumbens. Addiction Biology
Paladini CA, Roeper J. (2014) Generating bursts (and pauses) in the dopamine midbrain neurons. Neuroscience. 282: 109-121
Branch SY, Goertz RB, Sharpe AL, et al. (2013) Food restriction increases glutamate receptor-mediated burst firing of dopamine neurons. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 13861-72
Gaval-Cruz M, Goertz B, Puttick DJ, et al. (2013) Chronic loss of Noradrenergic Tone Produces β-Arrestin2-Mediated Cocaine Hypersensitivity and a GαI to Gαs switch in D2 Receptor Coupling in the Nucleus Accumbens Catecholamine Research in the 21st Century: Abstracts and Graphical Abstracts, 10th International Catecholamine Symposium, 2012. 111
Ko D, Wilson CJ, Lobb CJ, et al. (2012) Detection of bursts and pauses in spike trains. Journal of Neuroscience Methods. 211: 145-58
Morikawa H, Paladini CA. (2011) Dynamic regulation of midbrain dopamine neuron activity: intrinsic, synaptic, and plasticity mechanisms. Neuroscience. 198: 95-111
Lobb CJ, Troyer TW, Wilson CJ, et al. (2011) Disinhibition bursting of dopaminergic neurons. Frontiers in Systems Neuroscience. 5: 25
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