Kristen A. Keefe

University of Utah, Salt Lake City, UT 
Basal Ganglia Structure and Function
"Kristen Keefe"
Mean distance: 14.03 (cluster 6)
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Furlong TM, Leavitt LS, Keefe KA, et al. (2016) Methamphetamine-, d-Amphetamine-, and p-Chloroamphetamine-Induced Neurotoxicity Differentially Effect Impulsive Responding on the Stop-Signal Task in Rats. Neurotoxicity Research
Kesner RP, Kirk RA, Clark JK, et al. (2016) Naloxone injections into CA3 disrupt pattern completion associated with relapse from cocaine seeking. Hippocampus
Fricks-Gleason AN, German CL, Hoonakker AJ, et al. (2016) An acute, epitope-specific modification in the dopamine transporter associated with methamphetamine-induced neurotoxicity. Synapse (New York, N.Y.)
Robinson JD, Howard CD, Pastuzyn ED, et al. (2014) Methamphetamine-induced neurotoxicity disrupts pharmacologically evoked dopamine transients in the dorsomedial and dorsolateral striatum. Neurotoxicity Research. 26: 152-67
Pastuzyn ED, Keefe KA. (2014) Changes in neural circuitry regulating response-reversal learning and Arc-mediated consolidation of learning in rats with methamphetamine-induced partial monoamine loss. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology. 39: 963-72
Friend DM, Fricks-Gleason AN, Keefe KA. (2014) Is there a role for nitric oxide in methamphetamine-induced dopamine terminal degeneration? Neurotoxicity Research. 25: 153-60
Riedy MD, Keefe KA. (2013) Lack of increased immediate early gene expression in rats reinstating cocaine-seeking behavior to discrete sensory cues. Plos One. 8: e72883
Friend DM, Keefe KA. (2013) A role for D1 dopamine receptors in striatal methamphetamine-induced neurotoxicity. Neuroscience Letters. 555: 243-7
Fricks-Gleason AN, Keefe KA. (2013) Evaluating the role of neuronal nitric oxide synthase-containing striatal interneurons in methamphetamine-induced dopamine neurotoxicity. Neurotoxicity Research. 24: 288-97
Howard CD, Daberkow DP, Ramsson ES, et al. (2013) Methamphetamine-induced neurotoxicity disrupts naturally occurring phasic dopamine signaling. The European Journal of Neuroscience. 38: 2078-88
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