CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits

CSF-contacting neurons are known to project to locomotor CPGs although their relevance to active locomotion is unclear. Here, the authors show that these cells constitute a mechanosensory organ relying on PKD2L1 channels to detect spinal cord curvature and modulate locomotor frequency in freely movi...

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Autores principales: Urs Lucas Böhm, Andrew Prendergast, Lydia Djenoune, Sophie Nunes Figueiredo, Johanna Gomez, Caleb Stokes, Sonya Kaiser, Maximilliano Suster, Koichi Kawakami, Marine Charpentier, Jean-Paul Concordet, Jean-Paul Rio, Filippo Del Bene, Claire Wyart
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/25791dd165b94a4e9900651c693643a8
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spelling oai:doaj.org-article:25791dd165b94a4e9900651c693643a82021-12-02T15:35:45ZCSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits10.1038/ncomms108662041-1723https://doaj.org/article/25791dd165b94a4e9900651c693643a82016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms10866https://doaj.org/toc/2041-1723CSF-contacting neurons are known to project to locomotor CPGs although their relevance to active locomotion is unclear. Here, the authors show that these cells constitute a mechanosensory organ relying on PKD2L1 channels to detect spinal cord curvature and modulate locomotor frequency in freely moving animals.Urs Lucas BöhmAndrew PrendergastLydia DjenouneSophie Nunes FigueiredoJohanna GomezCaleb StokesSonya KaiserMaximilliano SusterKoichi KawakamiMarine CharpentierJean-Paul ConcordetJean-Paul RioFilippo Del BeneClaire WyartNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Urs Lucas Böhm
Andrew Prendergast
Lydia Djenoune
Sophie Nunes Figueiredo
Johanna Gomez
Caleb Stokes
Sonya Kaiser
Maximilliano Suster
Koichi Kawakami
Marine Charpentier
Jean-Paul Concordet
Jean-Paul Rio
Filippo Del Bene
Claire Wyart
CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
description CSF-contacting neurons are known to project to locomotor CPGs although their relevance to active locomotion is unclear. Here, the authors show that these cells constitute a mechanosensory organ relying on PKD2L1 channels to detect spinal cord curvature and modulate locomotor frequency in freely moving animals.
format article
author Urs Lucas Böhm
Andrew Prendergast
Lydia Djenoune
Sophie Nunes Figueiredo
Johanna Gomez
Caleb Stokes
Sonya Kaiser
Maximilliano Suster
Koichi Kawakami
Marine Charpentier
Jean-Paul Concordet
Jean-Paul Rio
Filippo Del Bene
Claire Wyart
author_facet Urs Lucas Böhm
Andrew Prendergast
Lydia Djenoune
Sophie Nunes Figueiredo
Johanna Gomez
Caleb Stokes
Sonya Kaiser
Maximilliano Suster
Koichi Kawakami
Marine Charpentier
Jean-Paul Concordet
Jean-Paul Rio
Filippo Del Bene
Claire Wyart
author_sort Urs Lucas Böhm
title CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
title_short CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
title_full CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
title_fullStr CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
title_full_unstemmed CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
title_sort csf-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/25791dd165b94a4e9900651c693643a8
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