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Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo

Sensory information is encoded within the brain in distributed spatiotemporal patterns of neuronal activity. Understanding how these patterns influence behavior requires a method to measure and to bidirectionally perturb with high spatial resolution the activity of the multiple neuronal cell types e...

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Autores principales: Forli, Angelo, Vecchia, Dania, Binini, Noemi, Succol, Francesca, Bovetti, Serena, Moretti, Claudio, Nespoli, Francesco, Mahn, Mathias, Baker, Christopher A., Bolton, McLean M., Yizhar, Ofer, Fellin, Tommaso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863087/
https://www.ncbi.nlm.nih.gov/pubmed/29539433
http://dx.doi.org/10.1016/j.celrep.2018.02.063
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author Forli, Angelo
Vecchia, Dania
Binini, Noemi
Succol, Francesca
Bovetti, Serena
Moretti, Claudio
Nespoli, Francesco
Mahn, Mathias
Baker, Christopher A.
Bolton, McLean M.
Yizhar, Ofer
Fellin, Tommaso
author_facet Forli, Angelo
Vecchia, Dania
Binini, Noemi
Succol, Francesca
Bovetti, Serena
Moretti, Claudio
Nespoli, Francesco
Mahn, Mathias
Baker, Christopher A.
Bolton, McLean M.
Yizhar, Ofer
Fellin, Tommaso
author_sort Forli, Angelo
collection PubMed
description Sensory information is encoded within the brain in distributed spatiotemporal patterns of neuronal activity. Understanding how these patterns influence behavior requires a method to measure and to bidirectionally perturb with high spatial resolution the activity of the multiple neuronal cell types engaged in sensory processing. Here, we combined two-photon holography to stimulate neurons expressing blue light-sensitive opsins (ChR2 and GtACR2) with two-photon imaging of the red-shifted indicator jRCaMP1a in the mouse neocortex in vivo. We demonstrate efficient control of neural excitability across cell types and layers with holographic stimulation and improved spatial resolution by opsin somatic targeting. Moreover, we performed simultaneous two-photon imaging of jRCaMP1a and bidirectional two-photon manipulation of cellular activity with negligible effect of the imaging beam on opsin excitation. This all-optical approach represents a powerful tool to causally dissect how activity patterns in specified ensembles of neurons determine brain function and animal behavior.
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spelling pubmed-58630872018-03-23 Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo Forli, Angelo Vecchia, Dania Binini, Noemi Succol, Francesca Bovetti, Serena Moretti, Claudio Nespoli, Francesco Mahn, Mathias Baker, Christopher A. Bolton, McLean M. Yizhar, Ofer Fellin, Tommaso Cell Rep Article Sensory information is encoded within the brain in distributed spatiotemporal patterns of neuronal activity. Understanding how these patterns influence behavior requires a method to measure and to bidirectionally perturb with high spatial resolution the activity of the multiple neuronal cell types engaged in sensory processing. Here, we combined two-photon holography to stimulate neurons expressing blue light-sensitive opsins (ChR2 and GtACR2) with two-photon imaging of the red-shifted indicator jRCaMP1a in the mouse neocortex in vivo. We demonstrate efficient control of neural excitability across cell types and layers with holographic stimulation and improved spatial resolution by opsin somatic targeting. Moreover, we performed simultaneous two-photon imaging of jRCaMP1a and bidirectional two-photon manipulation of cellular activity with negligible effect of the imaging beam on opsin excitation. This all-optical approach represents a powerful tool to causally dissect how activity patterns in specified ensembles of neurons determine brain function and animal behavior. Cell Press 2018-03-13 /pmc/articles/PMC5863087/ /pubmed/29539433 http://dx.doi.org/10.1016/j.celrep.2018.02.063 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Forli, Angelo
Vecchia, Dania
Binini, Noemi
Succol, Francesca
Bovetti, Serena
Moretti, Claudio
Nespoli, Francesco
Mahn, Mathias
Baker, Christopher A.
Bolton, McLean M.
Yizhar, Ofer
Fellin, Tommaso
Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo
title Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo
title_full Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo
title_fullStr Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo
title_full_unstemmed Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo
title_short Two-Photon Bidirectional Control and Imaging of Neuronal Excitability with High Spatial Resolution In Vivo
title_sort two-photon bidirectional control and imaging of neuronal excitability with high spatial resolution in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863087/
https://www.ncbi.nlm.nih.gov/pubmed/29539433
http://dx.doi.org/10.1016/j.celrep.2018.02.063
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