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A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories

Adaptive reward-related decision making often requires accurate and detailed representation of potential available rewards. Environmental reward-predictive stimuli can facilitate these representations, allowing one to infer which specific rewards might be available and choose accordingly. This proce...

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Autores principales: Sias, Ana C, Morse, Ashleigh K, Wang, Sherry, Greenfield, Venuz Y, Goodpaster, Caitlin M, Wrenn, Tyler M, Wikenheiser, Andrew M, Holley, Sandra M, Cepeda, Carlos, Levine, Michael S, Wassum, Kate M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8266390/
https://www.ncbi.nlm.nih.gov/pubmed/34142660
http://dx.doi.org/10.7554/eLife.68617
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author Sias, Ana C
Morse, Ashleigh K
Wang, Sherry
Greenfield, Venuz Y
Goodpaster, Caitlin M
Wrenn, Tyler M
Wikenheiser, Andrew M
Holley, Sandra M
Cepeda, Carlos
Levine, Michael S
Wassum, Kate M
author_facet Sias, Ana C
Morse, Ashleigh K
Wang, Sherry
Greenfield, Venuz Y
Goodpaster, Caitlin M
Wrenn, Tyler M
Wikenheiser, Andrew M
Holley, Sandra M
Cepeda, Carlos
Levine, Michael S
Wassum, Kate M
author_sort Sias, Ana C
collection PubMed
description Adaptive reward-related decision making often requires accurate and detailed representation of potential available rewards. Environmental reward-predictive stimuli can facilitate these representations, allowing one to infer which specific rewards might be available and choose accordingly. This process relies on encoded relationships between the cues and the sensory-specific details of the rewards they predict. Here, we interrogated the function of the basolateral amygdala (BLA) and its interaction with the lateral orbitofrontal cortex (lOFC) in the ability to learn such stimulus-outcome associations and use these memories to guide decision making. Using optical recording and inhibition approaches, Pavlovian cue-reward conditioning, and the outcome-selective Pavlovian-to-instrumental transfer (PIT) test in male rats, we found that the BLA is robustly activated at the time of stimulus-outcome learning and that this activity is necessary for sensory-specific stimulus-outcome memories to be encoded, so they can subsequently influence reward choices. Direct input from the lOFC was found to support the BLA in this function. Based on prior work, activity in BLA projections back to the lOFC was known to support the use of stimulus-outcome memories to influence decision making. By multiplexing optogenetic and chemogenetic inhibition we performed a serial circuit disconnection and found that the lOFC→BLA and BLA→lOFC pathways form a functional circuit regulating the encoding (lOFC→BLA) and subsequent use (BLA→lOFC) of the stimulus-dependent, sensory-specific reward memories that are critical for adaptive, appetitive decision making.
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spelling pubmed-82663902021-07-12 A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories Sias, Ana C Morse, Ashleigh K Wang, Sherry Greenfield, Venuz Y Goodpaster, Caitlin M Wrenn, Tyler M Wikenheiser, Andrew M Holley, Sandra M Cepeda, Carlos Levine, Michael S Wassum, Kate M eLife Neuroscience Adaptive reward-related decision making often requires accurate and detailed representation of potential available rewards. Environmental reward-predictive stimuli can facilitate these representations, allowing one to infer which specific rewards might be available and choose accordingly. This process relies on encoded relationships between the cues and the sensory-specific details of the rewards they predict. Here, we interrogated the function of the basolateral amygdala (BLA) and its interaction with the lateral orbitofrontal cortex (lOFC) in the ability to learn such stimulus-outcome associations and use these memories to guide decision making. Using optical recording and inhibition approaches, Pavlovian cue-reward conditioning, and the outcome-selective Pavlovian-to-instrumental transfer (PIT) test in male rats, we found that the BLA is robustly activated at the time of stimulus-outcome learning and that this activity is necessary for sensory-specific stimulus-outcome memories to be encoded, so they can subsequently influence reward choices. Direct input from the lOFC was found to support the BLA in this function. Based on prior work, activity in BLA projections back to the lOFC was known to support the use of stimulus-outcome memories to influence decision making. By multiplexing optogenetic and chemogenetic inhibition we performed a serial circuit disconnection and found that the lOFC→BLA and BLA→lOFC pathways form a functional circuit regulating the encoding (lOFC→BLA) and subsequent use (BLA→lOFC) of the stimulus-dependent, sensory-specific reward memories that are critical for adaptive, appetitive decision making. eLife Sciences Publications, Ltd 2021-06-18 /pmc/articles/PMC8266390/ /pubmed/34142660 http://dx.doi.org/10.7554/eLife.68617 Text en © 2021, Sias et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Sias, Ana C
Morse, Ashleigh K
Wang, Sherry
Greenfield, Venuz Y
Goodpaster, Caitlin M
Wrenn, Tyler M
Wikenheiser, Andrew M
Holley, Sandra M
Cepeda, Carlos
Levine, Michael S
Wassum, Kate M
A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
title A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
title_full A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
title_fullStr A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
title_full_unstemmed A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
title_short A bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
title_sort bidirectional corticoamygdala circuit for the encoding and retrieval of detailed reward memories
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8266390/
https://www.ncbi.nlm.nih.gov/pubmed/34142660
http://dx.doi.org/10.7554/eLife.68617
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