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Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex

Generating a comprehensive description of cortical networks requires a large-scale, systematic approach. To that end, we have begun a pipeline project using multipatch electrophysiology, supplemented with two-photon optogenetics, to characterize connectivity and synaptic signaling between classes of...

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Autores principales: Seeman, Stephanie C, Campagnola, Luke, Davoudian, Pasha A, Hoggarth, Alex, Hage, Travis A, Bosma-Moody, Alice, Baker, Christopher A, Lee, Jung Hoon, Mihalas, Stefan, Teeter, Corinne, Ko, Andrew L, Ojemann, Jeffrey G, Gwinn, Ryder P, Silbergeld, Daniel L, Cobbs, Charles, Phillips, John, Lein, Ed, Murphy, Gabe, Koch, Christof, Zeng, Hongkui, Jarsky, Tim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6158007/
https://www.ncbi.nlm.nih.gov/pubmed/30256194
http://dx.doi.org/10.7554/eLife.37349
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author Seeman, Stephanie C
Campagnola, Luke
Davoudian, Pasha A
Hoggarth, Alex
Hage, Travis A
Bosma-Moody, Alice
Baker, Christopher A
Lee, Jung Hoon
Mihalas, Stefan
Teeter, Corinne
Ko, Andrew L
Ojemann, Jeffrey G
Gwinn, Ryder P
Silbergeld, Daniel L
Cobbs, Charles
Phillips, John
Lein, Ed
Murphy, Gabe
Koch, Christof
Zeng, Hongkui
Jarsky, Tim
author_facet Seeman, Stephanie C
Campagnola, Luke
Davoudian, Pasha A
Hoggarth, Alex
Hage, Travis A
Bosma-Moody, Alice
Baker, Christopher A
Lee, Jung Hoon
Mihalas, Stefan
Teeter, Corinne
Ko, Andrew L
Ojemann, Jeffrey G
Gwinn, Ryder P
Silbergeld, Daniel L
Cobbs, Charles
Phillips, John
Lein, Ed
Murphy, Gabe
Koch, Christof
Zeng, Hongkui
Jarsky, Tim
author_sort Seeman, Stephanie C
collection PubMed
description Generating a comprehensive description of cortical networks requires a large-scale, systematic approach. To that end, we have begun a pipeline project using multipatch electrophysiology, supplemented with two-photon optogenetics, to characterize connectivity and synaptic signaling between classes of neurons in adult mouse primary visual cortex (V1) and human cortex. We focus on producing results detailed enough for the generation of computational models and enabling comparison with future studies. Here, we report our examination of intralaminar connectivity within each of several classes of excitatory neurons. We find that connections are sparse but present among all excitatory cell classes and layers we sampled, and that most mouse synapses exhibited short-term depression with similar dynamics. Synaptic signaling between a subset of layer 2/3 neurons, however, exhibited facilitation. These results contribute to a body of evidence describing recurrent excitatory connectivity as a conserved feature of cortical microcircuits.
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spelling pubmed-61580072018-09-27 Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex Seeman, Stephanie C Campagnola, Luke Davoudian, Pasha A Hoggarth, Alex Hage, Travis A Bosma-Moody, Alice Baker, Christopher A Lee, Jung Hoon Mihalas, Stefan Teeter, Corinne Ko, Andrew L Ojemann, Jeffrey G Gwinn, Ryder P Silbergeld, Daniel L Cobbs, Charles Phillips, John Lein, Ed Murphy, Gabe Koch, Christof Zeng, Hongkui Jarsky, Tim eLife Neuroscience Generating a comprehensive description of cortical networks requires a large-scale, systematic approach. To that end, we have begun a pipeline project using multipatch electrophysiology, supplemented with two-photon optogenetics, to characterize connectivity and synaptic signaling between classes of neurons in adult mouse primary visual cortex (V1) and human cortex. We focus on producing results detailed enough for the generation of computational models and enabling comparison with future studies. Here, we report our examination of intralaminar connectivity within each of several classes of excitatory neurons. We find that connections are sparse but present among all excitatory cell classes and layers we sampled, and that most mouse synapses exhibited short-term depression with similar dynamics. Synaptic signaling between a subset of layer 2/3 neurons, however, exhibited facilitation. These results contribute to a body of evidence describing recurrent excitatory connectivity as a conserved feature of cortical microcircuits. eLife Sciences Publications, Ltd 2018-09-26 /pmc/articles/PMC6158007/ /pubmed/30256194 http://dx.doi.org/10.7554/eLife.37349 Text en © 2018, Seeman 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
Seeman, Stephanie C
Campagnola, Luke
Davoudian, Pasha A
Hoggarth, Alex
Hage, Travis A
Bosma-Moody, Alice
Baker, Christopher A
Lee, Jung Hoon
Mihalas, Stefan
Teeter, Corinne
Ko, Andrew L
Ojemann, Jeffrey G
Gwinn, Ryder P
Silbergeld, Daniel L
Cobbs, Charles
Phillips, John
Lein, Ed
Murphy, Gabe
Koch, Christof
Zeng, Hongkui
Jarsky, Tim
Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
title Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
title_full Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
title_fullStr Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
title_full_unstemmed Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
title_short Sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
title_sort sparse recurrent excitatory connectivity in the microcircuit of the adult mouse and human cortex
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6158007/
https://www.ncbi.nlm.nih.gov/pubmed/30256194
http://dx.doi.org/10.7554/eLife.37349
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