Publication | Open Access
Prefrontal cortical regulation of brainwide circuit dynamics and reward-related behavior
537
Citations
70
References
2015
Year
NeuropsychologyBrain MechanismAffective NeuroscienceDopamine Neuron StimulationAttentionSocial SciencesDopaminergic StimulationCognitive NeuroscienceMedial Prefrontal CortexCognitive SciencePsychiatryBehavioral NeuroscienceNeuropharmacologyReward SystemDopamineBrain CircuitryBrainwide Circuit DynamicsNeurobiological MechanismNeurobiological FactorNeural CircuitsNeuroscienceBiological PsychiatryMedicine
Motivation for reward drives adaptive behaviors, whereas impairment of reward perception and experience (anhedonia) can contribute to psychiatric diseases, including depression and schizophrenia. We sought to test the hypothesis that the medial prefrontal cortex (mPFC) controls interactions among specific subcortical regions that govern hedonic responses. By using optogenetic functional magnetic resonance imaging to locally manipulate but globally visualize neural activity in rats, we found that dopamine neuron stimulation drives striatal activity, whereas locally increased mPFC excitability reduces this striatal response and inhibits the behavioral drive for dopaminergic stimulation. This chronic mPFC overactivity also stably suppresses natural reward-motivated behaviors and induces specific new brainwide functional interactions, which predict the degree of anhedonia in individuals. These findings describe a mechanism by which mPFC modulates expression of reward-seeking behavior, by regulating the dynamical interactions between specific distant subcortical regions.
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