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Journal of the Experimental Analysis of Behavior|October 2, 2010
Response acquisition and fixed-ratio escalation based on interresponse times in ratsTracy G Taylor, Chad M Galuska, Kelly Banna, et al.Drug and Alcohol Dependence|December 15, 2010
Distinctive characteristics of methamphetamine users presenting at public clinics: steep rise in South Carolina, United States, 2000-2005Jeffrey E Korte, F Berry Hiott, Kathleen T Brady, et al.The Journal of Pharmacology and Experimental Therapeutics|August 4, 2009
Extended methamphetamine self-administration in rats results in a selective reduction of dopamine transporter levels in the prefrontal cortex and dorsal striatum not accompanied by marked monoaminergic depletionMarek Schwendt, Angelica Rocha, Ronald E See, et al.Brain Structure & Function|July 9, 2013
Fos expression induced by cocaine-conditioned cues in male and female ratsLuyi Zhou, Carla Pruitt, Christina B Shin, et al.Behavioural Pharmacology|May 21, 2011
A comparison of economic demand and conditioned-cued reinstatement of methamphetamine-seeking or food-seeking in ratsChad M Galuska, Kelly M Banna, Lena Vaughn Willse, et al.The International Journal of Neuropsychopharmacology|December 25, 2014
Oxytocin reduces cocaine seeking and reverses chronic cocaine-induced changes in glutamate receptor functionLuyi Zhou, Wei-Lun Sun, Amy B Young, et al.Psychopharmacology|April 3, 2016
Chronic methamphetamine self-administration alters cognitive flexibility in male ratsBrittney M Cox, Zackary A Cope, Aram Parsegian, et al.Journal of Drug Abuse|June 18, 2016
Regional Brain Activity in Abstinent Methamphetamine Dependent Males Following Cue ExposureRobert Malcolm, Hugh Myrick, Xingbao Li, et al.Neuropharmacology|February 22, 2005
In vivo behavioral effects of stable, receptor-selective neurotensin[8-13] analogues that cross the blood-brain barrierKyle P Kokko, M Kyle Hadden, Kimber L Price, et al.Proceedings of the National Academy of Sciences of the United States of America|December 22, 2010
Reversing cocaine-induced synaptic potentiation provides enduring protection from relapseKhaled Moussawi, Wenhua Zhou, Haowei Shen, et al.Pageof 9