A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ

The sound envelope is important for speech perception. Here, the authors look at mechanisms by which the sound envelope is encoded, finding that it arises from distortion produced by mechanoelectrical transduction channels. Surprisingly, the envelope is not present in basilar membrane vibrations.

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Autores principales: Alfred L. Nuttall, Anthony J. Ricci, George Burwood, James M. Harte, Stefan Stenfelt, Per Cayé-Thomasen, Tianying Ren, Sripriya Ramamoorthy, Yuan Zhang, Teresa Wilson, Thomas Lunner, Brian C. J. Moore, Anders Fridberger
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/475cbf140b9d4b45bc152aec6233e3f8
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spelling oai:doaj.org-article:475cbf140b9d4b45bc152aec6233e3f82021-12-02T15:33:56ZA mechanoelectrical mechanism for detection of sound envelopes in the hearing organ10.1038/s41467-018-06725-w2041-1723https://doaj.org/article/475cbf140b9d4b45bc152aec6233e3f82018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06725-whttps://doaj.org/toc/2041-1723The sound envelope is important for speech perception. Here, the authors look at mechanisms by which the sound envelope is encoded, finding that it arises from distortion produced by mechanoelectrical transduction channels. Surprisingly, the envelope is not present in basilar membrane vibrations.Alfred L. NuttallAnthony J. RicciGeorge BurwoodJames M. HarteStefan StenfeltPer Cayé-ThomasenTianying RenSripriya RamamoorthyYuan ZhangTeresa WilsonThomas LunnerBrian C. J. MooreAnders FridbergerNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Alfred L. Nuttall
Anthony J. Ricci
George Burwood
James M. Harte
Stefan Stenfelt
Per Cayé-Thomasen
Tianying Ren
Sripriya Ramamoorthy
Yuan Zhang
Teresa Wilson
Thomas Lunner
Brian C. J. Moore
Anders Fridberger
A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
description The sound envelope is important for speech perception. Here, the authors look at mechanisms by which the sound envelope is encoded, finding that it arises from distortion produced by mechanoelectrical transduction channels. Surprisingly, the envelope is not present in basilar membrane vibrations.
format article
author Alfred L. Nuttall
Anthony J. Ricci
George Burwood
James M. Harte
Stefan Stenfelt
Per Cayé-Thomasen
Tianying Ren
Sripriya Ramamoorthy
Yuan Zhang
Teresa Wilson
Thomas Lunner
Brian C. J. Moore
Anders Fridberger
author_facet Alfred L. Nuttall
Anthony J. Ricci
George Burwood
James M. Harte
Stefan Stenfelt
Per Cayé-Thomasen
Tianying Ren
Sripriya Ramamoorthy
Yuan Zhang
Teresa Wilson
Thomas Lunner
Brian C. J. Moore
Anders Fridberger
author_sort Alfred L. Nuttall
title A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
title_short A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
title_full A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
title_fullStr A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
title_full_unstemmed A mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
title_sort mechanoelectrical mechanism for detection of sound envelopes in the hearing organ
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/475cbf140b9d4b45bc152aec6233e3f8
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