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Circuit-Specific Dendritic Development in the Piriform Cortex

Dendritic geometry is largely determined during postnatal development and has a substantial impact on neural function. In sensory processing, postnatal development of the dendritic tree is affected by two dominant circuit motifs, ascending sensory feedforward inputs and descending and local recurren...

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Autores principales: Moreno-Velasquez, Laura, Lo, Hung, Lenzi, Stephen, Kaehne, Malte, Breustedt, Jörg, Schmitz, Dietmar, Rüdiger, Sten, Johenning, Friedrich W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7307633/
https://www.ncbi.nlm.nih.gov/pubmed/32457067
http://dx.doi.org/10.1523/ENEURO.0083-20.2020
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author Moreno-Velasquez, Laura
Lo, Hung
Lenzi, Stephen
Kaehne, Malte
Breustedt, Jörg
Schmitz, Dietmar
Rüdiger, Sten
Johenning, Friedrich W.
author_facet Moreno-Velasquez, Laura
Lo, Hung
Lenzi, Stephen
Kaehne, Malte
Breustedt, Jörg
Schmitz, Dietmar
Rüdiger, Sten
Johenning, Friedrich W.
author_sort Moreno-Velasquez, Laura
collection PubMed
description Dendritic geometry is largely determined during postnatal development and has a substantial impact on neural function. In sensory processing, postnatal development of the dendritic tree is affected by two dominant circuit motifs, ascending sensory feedforward inputs and descending and local recurrent connections. In the three-layered anterior piriform cortex (aPCx), neurons in the sublayers 2a and 2b display vertical segregation of these two circuit motifs. Here, we combined electrophysiology, detailed morphometry, and Ca(2+) imaging in acute mouse brain slices and modeling to study circuit-specific aspects of dendritic development. We observed that determination of branching complexity, dendritic length increases, and pruning occurred in distinct developmental phases. Layer 2a and layer 2b neurons displayed developmental phase-specific differences between their apical and basal dendritic trees related to differences in circuit incorporation. We further identified functional candidate mechanisms for circuit-specific differences in postnatal dendritic growth in sublayers 2a and 2b at the mesoscale and microscale levels. Already in the first postnatal week, functional connectivity of layer 2a and layer 2b neurons during early spontaneous network activity scales with differences in basal dendritic growth. During the early critical period of sensory plasticity in the piriform cortex, our data are consistent with a model that proposes a role for dendritic NMDA-spikes in selecting branches for survival during developmental pruning in apical dendrites. The different stages of the morphologic and functional developmental pattern differences between layer 2a and layer 2b neurons demonstrate the complex interplay between dendritic development and circuit specificity.
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spelling pubmed-73076332020-06-23 Circuit-Specific Dendritic Development in the Piriform Cortex Moreno-Velasquez, Laura Lo, Hung Lenzi, Stephen Kaehne, Malte Breustedt, Jörg Schmitz, Dietmar Rüdiger, Sten Johenning, Friedrich W. eNeuro Research Article: New Research Dendritic geometry is largely determined during postnatal development and has a substantial impact on neural function. In sensory processing, postnatal development of the dendritic tree is affected by two dominant circuit motifs, ascending sensory feedforward inputs and descending and local recurrent connections. In the three-layered anterior piriform cortex (aPCx), neurons in the sublayers 2a and 2b display vertical segregation of these two circuit motifs. Here, we combined electrophysiology, detailed morphometry, and Ca(2+) imaging in acute mouse brain slices and modeling to study circuit-specific aspects of dendritic development. We observed that determination of branching complexity, dendritic length increases, and pruning occurred in distinct developmental phases. Layer 2a and layer 2b neurons displayed developmental phase-specific differences between their apical and basal dendritic trees related to differences in circuit incorporation. We further identified functional candidate mechanisms for circuit-specific differences in postnatal dendritic growth in sublayers 2a and 2b at the mesoscale and microscale levels. Already in the first postnatal week, functional connectivity of layer 2a and layer 2b neurons during early spontaneous network activity scales with differences in basal dendritic growth. During the early critical period of sensory plasticity in the piriform cortex, our data are consistent with a model that proposes a role for dendritic NMDA-spikes in selecting branches for survival during developmental pruning in apical dendrites. The different stages of the morphologic and functional developmental pattern differences between layer 2a and layer 2b neurons demonstrate the complex interplay between dendritic development and circuit specificity. Society for Neuroscience 2020-06-17 /pmc/articles/PMC7307633/ /pubmed/32457067 http://dx.doi.org/10.1523/ENEURO.0083-20.2020 Text en Copyright © 2020 Moreno-Velasquez et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article: New Research
Moreno-Velasquez, Laura
Lo, Hung
Lenzi, Stephen
Kaehne, Malte
Breustedt, Jörg
Schmitz, Dietmar
Rüdiger, Sten
Johenning, Friedrich W.
Circuit-Specific Dendritic Development in the Piriform Cortex
title Circuit-Specific Dendritic Development in the Piriform Cortex
title_full Circuit-Specific Dendritic Development in the Piriform Cortex
title_fullStr Circuit-Specific Dendritic Development in the Piriform Cortex
title_full_unstemmed Circuit-Specific Dendritic Development in the Piriform Cortex
title_short Circuit-Specific Dendritic Development in the Piriform Cortex
title_sort circuit-specific dendritic development in the piriform cortex
topic Research Article: New Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7307633/
https://www.ncbi.nlm.nih.gov/pubmed/32457067
http://dx.doi.org/10.1523/ENEURO.0083-20.2020
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