Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence

Aberrant synchronous oscillations have been associated with numerous brain disorders, including essential tremor. The authors show that synchronous cerebellar activity can casually affect essential tremor and that its underlying mechanism may be related to the temporal coherence of the tremulous mov...

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Autores principales: Sebastian R. Schreglmann, David Wang, Robert L. Peach, Junheng Li, Xu Zhang, Anna Latorre, Edward Rhodes, Emanuele Panella, Antonino M. Cassara, Edward S. Boyden, Mauricio Barahona, Sabato Santaniello, John Rothwell, Kailash P. Bhatia, Nir Grossman
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/681959c3c2784e24b87e39017057d37c
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spelling oai:doaj.org-article:681959c3c2784e24b87e39017057d37c2021-12-02T14:01:26ZNon-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence10.1038/s41467-020-20581-72041-1723https://doaj.org/article/681959c3c2784e24b87e39017057d37c2021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20581-7https://doaj.org/toc/2041-1723Aberrant synchronous oscillations have been associated with numerous brain disorders, including essential tremor. The authors show that synchronous cerebellar activity can casually affect essential tremor and that its underlying mechanism may be related to the temporal coherence of the tremulous movement.Sebastian R. SchreglmannDavid WangRobert L. PeachJunheng LiXu ZhangAnna LatorreEdward RhodesEmanuele PanellaAntonino M. CassaraEdward S. BoydenMauricio BarahonaSabato SantanielloJohn RothwellKailash P. BhatiaNir GrossmanNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sebastian R. Schreglmann
David Wang
Robert L. Peach
Junheng Li
Xu Zhang
Anna Latorre
Edward Rhodes
Emanuele Panella
Antonino M. Cassara
Edward S. Boyden
Mauricio Barahona
Sabato Santaniello
John Rothwell
Kailash P. Bhatia
Nir Grossman
Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
description Aberrant synchronous oscillations have been associated with numerous brain disorders, including essential tremor. The authors show that synchronous cerebellar activity can casually affect essential tremor and that its underlying mechanism may be related to the temporal coherence of the tremulous movement.
format article
author Sebastian R. Schreglmann
David Wang
Robert L. Peach
Junheng Li
Xu Zhang
Anna Latorre
Edward Rhodes
Emanuele Panella
Antonino M. Cassara
Edward S. Boyden
Mauricio Barahona
Sabato Santaniello
John Rothwell
Kailash P. Bhatia
Nir Grossman
author_facet Sebastian R. Schreglmann
David Wang
Robert L. Peach
Junheng Li
Xu Zhang
Anna Latorre
Edward Rhodes
Emanuele Panella
Antonino M. Cassara
Edward S. Boyden
Mauricio Barahona
Sabato Santaniello
John Rothwell
Kailash P. Bhatia
Nir Grossman
author_sort Sebastian R. Schreglmann
title Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
title_short Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
title_full Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
title_fullStr Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
title_full_unstemmed Non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
title_sort non-invasive suppression of essential tremor via phase-locked disruption of its temporal coherence
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/681959c3c2784e24b87e39017057d37c
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