Addiction is a behavioral disease, of which core components can be modeled in rodents. Much evidence implicates drug-evoked synaptic plasticity in cocaine-evoked locomotor sensitization, cue-induced cocaine seeking, and incubation of cocaine craving. However, the type of plasticity evoked by different modalities of cocaine administration (eg contingent vs non-contingent) and its role in reshaping circuit function remains largely elusive. Here we exposed mice to various regimens of cocaine and recorded excitatory transmission onto identified medium-sized spiny neurons (MSN, expressing fluorescent proteins under the control of either D1R or D2R dopamine receptor promotor) in the nucleus accumbens at time points when behavioral adaptations are...
Drug-evoked synaptic plasticity in the mesolimbic dopamine system reorganizes neural circuits that m...
SummaryDrug-evoked synaptic plasticity in the mesolimbic dopamine (DA) system reorganizes neural cir...
© 2009 CINP. Online edition of the journal is available at http://journals.cambridge.org/action/disp...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
SummaryCocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic d...
Addictive drugs have in common that they cause surges in dopamine (DA) concentration in the mesolimb...
Addictive drugs have in common that they cause surges in dopamine (DA) concentration in the mesolimb...
Drug-evoked synaptic plasticity in the mesolimbic dopamine (DA) system reorganizes neural circuits t...
SummaryCocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic d...
Drugs of abuse have the ability to instantiate plastic adaptations within the central nervous system...
Drug-evoked synaptic plasticity in the mesolimbic dopamine system reorganizes neural circuits that m...
Drug-evoked synaptic plasticity in the mesolimbic dopamine system reorganizes neural circuits that m...
SummaryDrug-evoked synaptic plasticity in the mesolimbic dopamine (DA) system reorganizes neural cir...
© 2009 CINP. Online edition of the journal is available at http://journals.cambridge.org/action/disp...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
Cocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic delivery...
SummaryCocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic d...
Addictive drugs have in common that they cause surges in dopamine (DA) concentration in the mesolimb...
Addictive drugs have in common that they cause surges in dopamine (DA) concentration in the mesolimb...
Drug-evoked synaptic plasticity in the mesolimbic dopamine (DA) system reorganizes neural circuits t...
SummaryCocaine strengthens excitatory synapses onto midbrain dopamine neurons through the synaptic d...
Drugs of abuse have the ability to instantiate plastic adaptations within the central nervous system...
Drug-evoked synaptic plasticity in the mesolimbic dopamine system reorganizes neural circuits that m...
Drug-evoked synaptic plasticity in the mesolimbic dopamine system reorganizes neural circuits that m...
SummaryDrug-evoked synaptic plasticity in the mesolimbic dopamine (DA) system reorganizes neural cir...
© 2009 CINP. Online edition of the journal is available at http://journals.cambridge.org/action/disp...