Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition

Synchronous neural activity is related with memory encoding and retrieval, but it is not clear whether this happens across the whole brain. Here, authors use intracranial recordings to show that gamma networks are largely asynchronous, desynchronizing while theta synchronizes during memory encoding...

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Autores principales: E. A. Solomon, J. E. Kragel, M. R. Sperling, A. Sharan, G. Worrell, M. Kucewicz, C. S. Inman, B. Lega, K. A. Davis, J. M. Stein, B. C. Jobst, K. A. Zaghloul, S. A. Sheth, D. S. Rizzuto, M. J. Kahana
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/caa7aa7955df4a94b9147b48f38c3fb7
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spelling oai:doaj.org-article:caa7aa7955df4a94b9147b48f38c3fb72021-12-02T14:41:59ZWidespread theta synchrony and high-frequency desynchronization underlies enhanced cognition10.1038/s41467-017-01763-22041-1723https://doaj.org/article/caa7aa7955df4a94b9147b48f38c3fb72017-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01763-2https://doaj.org/toc/2041-1723Synchronous neural activity is related with memory encoding and retrieval, but it is not clear whether this happens across the whole brain. Here, authors use intracranial recordings to show that gamma networks are largely asynchronous, desynchronizing while theta synchronizes during memory encoding and retrieval.E. A. SolomonJ. E. KragelM. R. SperlingA. SharanG. WorrellM. KucewiczC. S. InmanB. LegaK. A. DavisJ. M. SteinB. C. JobstK. A. ZaghloulS. A. ShethD. S. RizzutoM. J. KahanaNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
E. A. Solomon
J. E. Kragel
M. R. Sperling
A. Sharan
G. Worrell
M. Kucewicz
C. S. Inman
B. Lega
K. A. Davis
J. M. Stein
B. C. Jobst
K. A. Zaghloul
S. A. Sheth
D. S. Rizzuto
M. J. Kahana
Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
description Synchronous neural activity is related with memory encoding and retrieval, but it is not clear whether this happens across the whole brain. Here, authors use intracranial recordings to show that gamma networks are largely asynchronous, desynchronizing while theta synchronizes during memory encoding and retrieval.
format article
author E. A. Solomon
J. E. Kragel
M. R. Sperling
A. Sharan
G. Worrell
M. Kucewicz
C. S. Inman
B. Lega
K. A. Davis
J. M. Stein
B. C. Jobst
K. A. Zaghloul
S. A. Sheth
D. S. Rizzuto
M. J. Kahana
author_facet E. A. Solomon
J. E. Kragel
M. R. Sperling
A. Sharan
G. Worrell
M. Kucewicz
C. S. Inman
B. Lega
K. A. Davis
J. M. Stein
B. C. Jobst
K. A. Zaghloul
S. A. Sheth
D. S. Rizzuto
M. J. Kahana
author_sort E. A. Solomon
title Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
title_short Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
title_full Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
title_fullStr Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
title_full_unstemmed Widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
title_sort widespread theta synchrony and high-frequency desynchronization underlies enhanced cognition
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/caa7aa7955df4a94b9147b48f38c3fb7
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