Learning & Memory · 2017 · 21 citations · 45 references
NeuropsychologyRetrieval-independent DisruptionNeurotransmitterExplicit MemorySocial SciencesMemoryNeurologyAmphetamine ClassCognitive NeuroscienceAbused DrugCognitive SciencePsychoactive DrugMemory StoragePsychiatryMemory SystemNeuropharmacologyDopaminePharmacologyMnemonicNeurophysiologyAddictionMemory LossProcedural MemoryNeuroscienceMedicineBrain Region
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 to be disrupted with cocaine. Unlike in the amygdala, methamphetamine-associated memory storage was not disrupted by NMIIi in the hippocampus, nucleus accumbens, or orbitofrontal cortex. NMIIi in the hippocampus did appear to disrupt reconsolidation. Identification of the unique mechanisms responsible for NMII-mediated, amygdala-dependent disruption of memory storage associated with the amphetamine class may enable induction of retrieval-independent vulnerability to other pathological memories.
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G. Di Chiara, Assunta Impérato · Proceedings of the National Academy of Sciences · 1988 · 4.7K citations · Full text
Psychopharmacology, Pharmacotherapy, Synaptic Dopamine Concentrations +18
Extinction-Reconsolidation Boundaries: Key to Persistent Attenuation of Fear Memories
Marie‐H. Monfils, Kiriana K. Cowansage, Eric Klann et al. · Science · 2009 · 953 citations · Full text