Literature DB >> 26400913

Prefrontal Regulation of Neuronal Activity in the Ventral Tegmental Area.

Yong Sang Jo1, Sheri J Y Mizumori1,2.   

Abstract

Growing evidence indicates that midbrain dopamine (DA) cells integrate reward expectancy-related information from the prefrontal cortex to properly compute errors in reward prediction. Here we investigated how 2 major prefrontal subregions, the orbitofrontal cortex (OFC) and the medial prefrontal cortex (mPFC), contributed to DAergic prediction errors while rats performed a delay discounting task on a T-maze. Most putative DA cells in the task showed phasic responses to salient cues that predicted delayed rewards, but not to the actual rewards. After temporary inactivation of the OFC, putative DA cells exhibited strikingly reduced phasic responses to reward-predicting cues but increased responses to rewards. In contrast, mPFC inactivation significantly elevated DA responses to both predictive cues and rewards. In addition, OFC, but not mPFC, inactivation disrupted the activity of putative non-DA cells that encoded expected reward values during waiting periods. These results suggest that the 2 prefrontal subregions differentially regulate DAergic prediction errors and the OFC conveys value signals to midbrain dopamine systems.
© The Author 2015. Published by Oxford University Press. All rights reserved. For Permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  decision-making; delay discounting; dopamine; orbitofrontal cortex; prefrontal cortex

Mesh:

Substances:

Year:  2015        PMID: 26400913      PMCID: PMC5028001          DOI: 10.1093/cercor/bhv215

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  52 in total

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Review 3.  A framework for studying the neurobiology of value-based decision making.

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Authors:  Jung Hoon Sul; Hoseok Kim; Namjung Huh; Daeyeol Lee; Min Whan Jung
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Review 5.  A neural substrate of prediction and reward.

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6.  Nucleus accumbens neurons encode predicted and ongoing reward costs in rats.

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Journal:  Eur J Neurosci       Date:  2010-12-29       Impact factor: 3.386

7.  Dissociable roles of ventral and dorsal striatum in instrumental conditioning.

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8.  Encoding predictive reward value in human amygdala and orbitofrontal cortex.

Authors:  Jay A Gottfried; John O'Doherty; Raymond J Dolan
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9.  The temporal precision of reward prediction in dopamine neurons.

Authors:  Christopher D Fiorillo; William T Newsome; Wolfram Schultz
Journal:  Nat Neurosci       Date:  2008-08       Impact factor: 24.884

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Authors:  Jeremy J Clark; Stefan G Sandberg; Matthew J Wanat; Jerylin O Gan; Eric A Horne; Andrew S Hart; Christina A Akers; Jones G Parker; Ingo Willuhn; Vicente Martinez; Scott B Evans; Nephi Stella; Paul E M Phillips
Journal:  Nat Methods       Date:  2009-12-27       Impact factor: 28.547

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  20 in total

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Authors:  Yong S Jo; Gabriel Heymann; Larry S Zweifel
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Review 4.  Depression: the search for separable behaviors and circuits.

Authors:  Ryan J Post; Melissa R Warden
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5.  Expectancy-Related Changes in Dopaminergic Error Signals Are Impaired by Cocaine Self-Administration.

Authors:  Yuji K Takahashi; Thomas A Stalnaker; Yasmin Marrero-Garcia; Ray M Rada; Geoffrey Schoenbaum
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6.  Effects of inference on dopaminergic prediction errors depend on orbitofrontal processing.

Authors:  Yuji K Takahashi; Thomas A Stalnaker; Matthew R Roesch; Geoffrey Schoenbaum
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7.  Analysis of morphine-induced changes in the activity of periaqueductal gray neurons in the intact rat.

Authors:  Valerie L Tryon; Sheri J Y Mizumori; Michael M Morgan
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8.  Temporal Specificity of Reward Prediction Errors Signaled by Putative Dopamine Neurons in Rat VTA Depends on Ventral Striatum.

Authors:  Yuji K Takahashi; Angela J Langdon; Yael Niv; Geoffrey Schoenbaum
Journal:  Neuron       Date:  2016-06-09       Impact factor: 17.173

Review 9.  Over the river, through the woods: cognitive maps in the hippocampus and orbitofrontal cortex.

Authors:  Andrew M Wikenheiser; Geoffrey Schoenbaum
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10.  Multifaceted Contributions by Different Regions of the Orbitofrontal and Medial Prefrontal Cortex to Probabilistic Reversal Learning.

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Journal:  J Neurosci       Date:  2016-02-10       Impact factor: 6.167

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