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Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture

Experience influences behavior, but little is known about how experience is encoded in the brain, and how changes in neural activity are implemented at a network level to improve performance. Here we investigate how differences in experience impact brain circuitry and behavior in larval zebrafish pr...

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Autores principales: Oldfield, Claire S, Grossrubatscher, Irene, Chávez, Mario, Hoagland, Adam, Huth, Alex R, Carroll, Elizabeth C, Prendergast, Andrew, Qu, Tony, Gallant, Jack L, Wyart, Claire, Isacoff, Ehud Y
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7561350/
https://www.ncbi.nlm.nih.gov/pubmed/32985972
http://dx.doi.org/10.7554/eLife.56619
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author Oldfield, Claire S
Grossrubatscher, Irene
Chávez, Mario
Hoagland, Adam
Huth, Alex R
Carroll, Elizabeth C
Prendergast, Andrew
Qu, Tony
Gallant, Jack L
Wyart, Claire
Isacoff, Ehud Y
author_facet Oldfield, Claire S
Grossrubatscher, Irene
Chávez, Mario
Hoagland, Adam
Huth, Alex R
Carroll, Elizabeth C
Prendergast, Andrew
Qu, Tony
Gallant, Jack L
Wyart, Claire
Isacoff, Ehud Y
author_sort Oldfield, Claire S
collection PubMed
description Experience influences behavior, but little is known about how experience is encoded in the brain, and how changes in neural activity are implemented at a network level to improve performance. Here we investigate how differences in experience impact brain circuitry and behavior in larval zebrafish prey capture. We find that experience of live prey compared to inert food increases capture success by boosting capture initiation. In response to live prey, animals with and without prior experience of live prey show activity in visual areas (pretectum and optic tectum) and motor areas (cerebellum and hindbrain), with similar visual area retinotopic maps of prey position. However, prey-experienced animals more readily initiate capture in response to visual area activity and have greater visually-evoked activity in two forebrain areas: the telencephalon and habenula. Consequently, disruption of habenular neurons reduces capture performance in prey-experienced fish. Together, our results suggest that experience of prey strengthens prey-associated visual drive to the forebrain, and that this lowers the threshold for prey-associated visual activity to trigger activity in motor areas, thereby improving capture performance.
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spelling pubmed-75613502020-10-16 Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture Oldfield, Claire S Grossrubatscher, Irene Chávez, Mario Hoagland, Adam Huth, Alex R Carroll, Elizabeth C Prendergast, Andrew Qu, Tony Gallant, Jack L Wyart, Claire Isacoff, Ehud Y eLife Neuroscience Experience influences behavior, but little is known about how experience is encoded in the brain, and how changes in neural activity are implemented at a network level to improve performance. Here we investigate how differences in experience impact brain circuitry and behavior in larval zebrafish prey capture. We find that experience of live prey compared to inert food increases capture success by boosting capture initiation. In response to live prey, animals with and without prior experience of live prey show activity in visual areas (pretectum and optic tectum) and motor areas (cerebellum and hindbrain), with similar visual area retinotopic maps of prey position. However, prey-experienced animals more readily initiate capture in response to visual area activity and have greater visually-evoked activity in two forebrain areas: the telencephalon and habenula. Consequently, disruption of habenular neurons reduces capture performance in prey-experienced fish. Together, our results suggest that experience of prey strengthens prey-associated visual drive to the forebrain, and that this lowers the threshold for prey-associated visual activity to trigger activity in motor areas, thereby improving capture performance. eLife Sciences Publications, Ltd 2020-09-28 /pmc/articles/PMC7561350/ /pubmed/32985972 http://dx.doi.org/10.7554/eLife.56619 Text en © 2020, Oldfield et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Oldfield, Claire S
Grossrubatscher, Irene
Chávez, Mario
Hoagland, Adam
Huth, Alex R
Carroll, Elizabeth C
Prendergast, Andrew
Qu, Tony
Gallant, Jack L
Wyart, Claire
Isacoff, Ehud Y
Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
title Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
title_full Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
title_fullStr Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
title_full_unstemmed Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
title_short Experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
title_sort experience, circuit dynamics, and forebrain recruitment in larval zebrafish prey capture
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7561350/
https://www.ncbi.nlm.nih.gov/pubmed/32985972
http://dx.doi.org/10.7554/eLife.56619
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