Literature DB >> 24405106

Medial-lateral organization of the orbitofrontal cortex.

Erin L Rich1, Jonathan D Wallis.   

Abstract

Emerging evidence suggests that specific cognitive functions localize to different subregions of OFC, but the nature of these functional distinctions remains unclear. One prominent theory, derived from human neuroimaging, proposes that different stimulus valences are processed in separate orbital regions, with medial and lateral OFC processing positive and negative stimuli, respectively. Thus far, neurophysiology data have not supported this theory. We attempted to reconcile these accounts by recording neural activity from the full medial-lateral extent of the orbital surface in monkeys receiving rewards and punishments via gain or loss of secondary reinforcement. We found no convincing evidence for valence selectivity in any orbital region. Instead, we report differences between neurons in central OFC and those on the inferior-lateral orbital convexity, in that they encoded different sources of value information provided by the behavioral task. Neurons in inferior convexity encoded the value of external stimuli, whereas those in OFC encoded value information derived from the structure of the behavioral task. We interpret these results in light of recent theories of OFC function and propose that these distinctions, not valence selectivity, may shed light on a fundamental organizing principle for value processing in orbital cortex.

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Year:  2014        PMID: 24405106      PMCID: PMC4091960          DOI: 10.1162/jocn_a_00573

Source DB:  PubMed          Journal:  J Cogn Neurosci        ISSN: 0898-929X            Impact factor:   3.225


  64 in total

1.  Abstract reward and punishment representations in the human orbitofrontal cortex.

Authors:  J O'Doherty; M L Kringelbach; E T Rolls; J Hornak; C Andrews
Journal:  Nat Neurosci       Date:  2001-01       Impact factor: 24.884

2.  Quantitative demonstration of comparable architectonic areas within the ventromedial and lateral orbital frontal cortex in the human and the macaque monkey brains.

Authors:  Scott Mackey; Michael Petrides
Journal:  Eur J Neurosci       Date:  2010-11-03       Impact factor: 3.386

3.  Attentional selection and action selection in the ventral and orbital prefrontal cortex.

Authors:  Matthew F S Rushworth; Mark J Buckley; Patricia M Gough; Iona H Alexander; Diana Kyriazis; Kathryn R McDonald; Richard E Passingham
Journal:  J Neurosci       Date:  2005-12-14       Impact factor: 6.167

4.  Architectonic subdivision of the orbital and medial prefrontal cortex in the macaque monkey.

Authors:  S T Carmichael; J L Price
Journal:  J Comp Neurol       Date:  1994-08-15       Impact factor: 3.215

5.  Sensory and premotor connections of the orbital and medial prefrontal cortex of macaque monkeys.

Authors:  S T Carmichael; J L Price
Journal:  J Comp Neurol       Date:  1995-12-25       Impact factor: 3.215

Review 6.  Neurobiology of economic choice: a good-based model.

Authors:  Camillo Padoa-Schioppa
Journal:  Annu Rev Neurosci       Date:  2011       Impact factor: 12.449

7.  Regionally distinct processing of rewards and punishments by the primate ventromedial prefrontal cortex.

Authors:  Ilya E Monosov; Okihide Hikosaka
Journal:  J Neurosci       Date:  2012-07-25       Impact factor: 6.167

8.  Encoding of gustatory working memory by orbitofrontal neurons.

Authors:  Antonio H Lara; Steven W Kennerley; Jonathan D Wallis
Journal:  J Neurosci       Date:  2009-01-21       Impact factor: 6.167

9.  Expectancy-related changes in firing of dopamine neurons depend on orbitofrontal cortex.

Authors:  Yuji K Takahashi; Matthew R Roesch; Robert C Wilson; Kathy Toreson; Patricio O'Donnell; Yael Niv; Geoffrey Schoenbaum
Journal:  Nat Neurosci       Date:  2011-10-30       Impact factor: 24.884

10.  Diminished neural processing of aversive and rewarding stimuli during selective serotonin reuptake inhibitor treatment.

Authors:  Ciara McCabe; Zevic Mishor; Philip J Cowen; Catherine J Harmer
Journal:  Biol Psychiatry       Date:  2009-12-24       Impact factor: 13.382

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  30 in total

1.  Abstract Context Representations in Primate Amygdala and Prefrontal Cortex.

Authors:  A Saez; M Rigotti; S Ostojic; S Fusi; C D Salzman
Journal:  Neuron       Date:  2015-08-19       Impact factor: 17.173

Review 2.  Neurophysiology of Reward-Guided Behavior: Correlates Related to Predictions, Value, Motivation, Errors, Attention, and Action.

Authors:  Gregory B Bissonette; Matthew R Roesch
Journal:  Curr Top Behav Neurosci       Date:  2016

Review 3.  Specializations for reward-guided decision-making in the primate ventral prefrontal cortex.

Authors:  Elisabeth A Murray; Peter H Rudebeck
Journal:  Nat Rev Neurosci       Date:  2018-07       Impact factor: 34.870

4.  Closed-Loop Theta Stimulation in the Orbitofrontal Cortex Prevents Reward-Based Learning.

Authors:  Eric B Knudsen; Joni D Wallis
Journal:  Neuron       Date:  2020-03-10       Impact factor: 17.173

Review 5.  Orbitofrontal Cortex: A Neural Circuit for Economic Decisions.

Authors:  Camillo Padoa-Schioppa; Katherine E Conen
Journal:  Neuron       Date:  2017-11-15       Impact factor: 17.173

6.  Retrospective Valuation of Experienced Outcome Encoded in Distinct Reward Representations in the Anterior Insula and Amygdala.

Authors:  Martin D Vestergaard; Wolfram Schultz
Journal:  J Neurosci       Date:  2020-10-19       Impact factor: 6.167

7.  Directional interconnectivity of the human amygdala, fusiform gyrus, and orbitofrontal cortex in emotional scene perception.

Authors:  David W Frank; Vincent D Costa; Bruno B Averbeck; Dean Sabatinelli
Journal:  J Neurophysiol       Date:  2019-06-05       Impact factor: 2.714

8.  Individual variation in the neural processes of motor decisions in the stop signal task: the influence of novelty seeking and harm avoidance personality traits.

Authors:  Jianping Hu; Dianne Lee; Sien Hu; Sheng Zhang; Herta Chao; Chiang-Shan R Li
Journal:  Brain Struct Funct       Date:  2015-05-20       Impact factor: 3.270

9.  Specialized Representations of Value in the Orbital and Ventrolateral Prefrontal Cortex: Desirability versus Availability of Outcomes.

Authors:  Peter H Rudebeck; Richard C Saunders; Dawn A Lundgren; Elisabeth A Murray
Journal:  Neuron       Date:  2017-08-30       Impact factor: 17.173

10.  The Transition from Evaluation to Selection Involves Neural Subspace Reorganization in Core Reward Regions.

Authors:  Seng Bum Michael Yoo; Benjamin Y Hayden
Journal:  Neuron       Date:  2019-12-10       Impact factor: 17.173

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