Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control

Aversive conditioning requires the learning of time intervals between conditioned and unconditioned stimuli, as well as the associations of the stimuli themselves. Here the authors show that dorsal striatum and basal amygdala are part of a functional network that encodes interval timing.

Bibliographic Details
Main Authors: Glenn Dallérac, Michael Graupner, Jeroen Knippenberg, Raquel Chacon Ruiz Martinez, Tatiane Ferreira Tavares, Lucille Tallot, Nicole El Massioui, Anna Verschueren, Sophie Höhn, Julie Boulanger Bertolus, Alex Reyes, Joseph E. LeDoux, Glenn E. Schafe, Lorenzo Diaz-Mataix, Valérie Doyère
Format: Article
Language:English
Published: Nature Portfolio 2017-01-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms13920
_version_ 1818977923891200000
author Glenn Dallérac
Michael Graupner
Jeroen Knippenberg
Raquel Chacon Ruiz Martinez
Tatiane Ferreira Tavares
Lucille Tallot
Nicole El Massioui
Anna Verschueren
Sophie Höhn
Julie Boulanger Bertolus
Alex Reyes
Joseph E. LeDoux
Glenn E. Schafe
Lorenzo Diaz-Mataix
Valérie Doyère
author_facet Glenn Dallérac
Michael Graupner
Jeroen Knippenberg
Raquel Chacon Ruiz Martinez
Tatiane Ferreira Tavares
Lucille Tallot
Nicole El Massioui
Anna Verschueren
Sophie Höhn
Julie Boulanger Bertolus
Alex Reyes
Joseph E. LeDoux
Glenn E. Schafe
Lorenzo Diaz-Mataix
Valérie Doyère
author_sort Glenn Dallérac
collection DOAJ
description Aversive conditioning requires the learning of time intervals between conditioned and unconditioned stimuli, as well as the associations of the stimuli themselves. Here the authors show that dorsal striatum and basal amygdala are part of a functional network that encodes interval timing.
first_indexed 2024-12-20T16:35:28Z
format Article
id doaj.art-00a3834e0a684696ae34cfa8f93cc45f
institution Directory Open Access Journal
issn 2041-1723
language English
last_indexed 2024-12-20T16:35:28Z
publishDate 2017-01-01
publisher Nature Portfolio
record_format Article
series Nature Communications
spelling doaj.art-00a3834e0a684696ae34cfa8f93cc45f2022-12-21T19:33:09ZengNature PortfolioNature Communications2041-17232017-01-018111410.1038/ncomms13920Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala controlGlenn Dallérac0Michael Graupner1Jeroen Knippenberg2Raquel Chacon Ruiz Martinez3Tatiane Ferreira Tavares4Lucille Tallot5Nicole El Massioui6Anna Verschueren7Sophie Höhn8Julie Boulanger Bertolus9Alex Reyes10Joseph E. LeDoux11Glenn E. Schafe12Lorenzo Diaz-Mataix13Valérie Doyère14Cognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCenter for Neural Science, New York UniversityCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayLaboratory of Neuromodulation, Teaching and Research Institute, Hospital Sirio Libanes, Rua Professor Daher Cutait, 69Cognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayCenter for Neural Science, New York UniversityCenter for Neural Science, New York UniversityDepartment of Psychology, Hunter CollegeCenter for Neural Science, New York UniversityCognition and Behaviour Department, Institut des Neurosciences Paris-Saclay (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris SaclayAversive conditioning requires the learning of time intervals between conditioned and unconditioned stimuli, as well as the associations of the stimuli themselves. Here the authors show that dorsal striatum and basal amygdala are part of a functional network that encodes interval timing.https://doi.org/10.1038/ncomms13920
spellingShingle Glenn Dallérac
Michael Graupner
Jeroen Knippenberg
Raquel Chacon Ruiz Martinez
Tatiane Ferreira Tavares
Lucille Tallot
Nicole El Massioui
Anna Verschueren
Sophie Höhn
Julie Boulanger Bertolus
Alex Reyes
Joseph E. LeDoux
Glenn E. Schafe
Lorenzo Diaz-Mataix
Valérie Doyère
Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
Nature Communications
title Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
title_full Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
title_fullStr Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
title_full_unstemmed Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
title_short Updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
title_sort updating temporal expectancy of an aversive event engages striatal plasticity under amygdala control
url https://doi.org/10.1038/ncomms13920
work_keys_str_mv AT glenndallerac updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT michaelgraupner updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT jeroenknippenberg updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT raquelchaconruizmartinez updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT tatianeferreiratavares updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT lucilletallot updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT nicoleelmassioui updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT annaverschueren updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT sophiehohn updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT julieboulangerbertolus updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT alexreyes updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT josepheledoux updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT glenneschafe updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT lorenzodiazmataix updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol
AT valeriedoyere updatingtemporalexpectancyofanaversiveeventengagesstriatalplasticityunderamygdalacontrol