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Briggs, Sherri B.; Blouin, Ashley M.; Young, Erica J.; Rumbaugh, Gavin; Miller, Courtney A. – Learning & Memory, 2017
Depolymerizing actin in the amygdala through nonmuscle myosin II inhibition (NMIIi) produces a selective, lasting, and retrieval-independent disruption of the storage of methamphetamine-associated memories. Here we report a similar disruption of memories associated with amphetamine, but not cocaine or morphine, by NMIIi. Reconsolidation appeared…
Descriptors: Memory, Brain Hemisphere Functions, Brain, Inhibition
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Briggs, Sherri B.; Hafenbreidel, Madalyn; Young, Erica J.; Rumbaugh, Gavin; Miller, Courtney A. – Learning & Memory, 2018
Using pharmacologic and genetic approaches targeting actin or the actin-driving molecular motor, nonmuscle myosin II (NMII), we previously discovered an immediate, retrieval-independent, and long-lasting disruption of methamphetamine- (METH-) and amphetamine-associated memories. A single intrabasolateral amygdala complex infusion or systemic…
Descriptors: Role, Memory, Genetics, Drug Therapy
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Childs, Jessica E.; DeLeon, Jaime; Nickel, Emily; Kroener, Sven – Learning & Memory, 2017
Drugs of abuse cause changes in the prefrontal cortex (PFC) and associated regions that impair inhibitory control over drug-seeking. Breaking the contingencies between drug-associated cues and the delivery of the reward during extinction learning reduces rates of relapse. Here we used vagus nerve stimulation (VNS) to induce targeted synaptic…
Descriptors: Cocaine, Genetics, Drug Use, Drug Abuse
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Hinton, Elizabeth A.; Wheeler, Marina G.; Gourley, Shannon L. – Learning & Memory, 2014
An important aspect of goal-directed action selection is differentiating between actions that are more or less likely to be reinforced. With repeated performance or psychostimulant exposure, however, actions can assume stimulus-elicited--or "habitual"--qualities that are resistant to change. We show that selective knockdown of prelimbic…
Descriptors: Cocaine, Goal Orientation, Reinforcement, Stimulants