Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas

Layer 4 of the mammalian neocortex is important for cortical information processing but its cellular composition and local circuits remains elusive. The authors compared two primary sensory cortical areas of mice and found differences in cell composition and local connectivity.

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Autores principales: Federico Scala, Dmitry Kobak, Shen Shan, Yves Bernaerts, Sophie Laturnus, Cathryn Rene Cadwell, Leonard Hartmanis, Emmanouil Froudarakis, Jesus Ramon Castro, Zheng Huan Tan, Stelios Papadopoulos, Saumil Surendra Patel, Rickard Sandberg, Philipp Berens, Xiaolong Jiang, Andreas Savas Tolias
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/612a91e14d9e463bb0023b10e7cbb11e
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spelling oai:doaj.org-article:612a91e14d9e463bb0023b10e7cbb11e2021-12-02T16:51:02ZLayer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas10.1038/s41467-019-12058-z2041-1723https://doaj.org/article/612a91e14d9e463bb0023b10e7cbb11e2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12058-zhttps://doaj.org/toc/2041-1723Layer 4 of the mammalian neocortex is important for cortical information processing but its cellular composition and local circuits remains elusive. The authors compared two primary sensory cortical areas of mice and found differences in cell composition and local connectivity.Federico ScalaDmitry KobakShen ShanYves BernaertsSophie LaturnusCathryn Rene CadwellLeonard HartmanisEmmanouil FroudarakisJesus Ramon CastroZheng Huan TanStelios PapadopoulosSaumil Surendra PatelRickard SandbergPhilipp BerensXiaolong JiangAndreas Savas ToliasNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Federico Scala
Dmitry Kobak
Shen Shan
Yves Bernaerts
Sophie Laturnus
Cathryn Rene Cadwell
Leonard Hartmanis
Emmanouil Froudarakis
Jesus Ramon Castro
Zheng Huan Tan
Stelios Papadopoulos
Saumil Surendra Patel
Rickard Sandberg
Philipp Berens
Xiaolong Jiang
Andreas Savas Tolias
Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
description Layer 4 of the mammalian neocortex is important for cortical information processing but its cellular composition and local circuits remains elusive. The authors compared two primary sensory cortical areas of mice and found differences in cell composition and local connectivity.
format article
author Federico Scala
Dmitry Kobak
Shen Shan
Yves Bernaerts
Sophie Laturnus
Cathryn Rene Cadwell
Leonard Hartmanis
Emmanouil Froudarakis
Jesus Ramon Castro
Zheng Huan Tan
Stelios Papadopoulos
Saumil Surendra Patel
Rickard Sandberg
Philipp Berens
Xiaolong Jiang
Andreas Savas Tolias
author_facet Federico Scala
Dmitry Kobak
Shen Shan
Yves Bernaerts
Sophie Laturnus
Cathryn Rene Cadwell
Leonard Hartmanis
Emmanouil Froudarakis
Jesus Ramon Castro
Zheng Huan Tan
Stelios Papadopoulos
Saumil Surendra Patel
Rickard Sandberg
Philipp Berens
Xiaolong Jiang
Andreas Savas Tolias
author_sort Federico Scala
title Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
title_short Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
title_full Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
title_fullStr Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
title_full_unstemmed Layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
title_sort layer 4 of mouse neocortex differs in cell types and circuit organization between sensory areas
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/612a91e14d9e463bb0023b10e7cbb11e
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