Publication:

Wireless Neurosensor for Full-Spectrum Electrophysiology Recordings during Free Behavior

cris.lastimport.scopus

2024-08-09T10:40:42Z

cris.lastimport.wos

2024-07-26T04:17:03Z

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205469

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6602616445

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UPCOURTINE

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INX-SV

cris.virtual.parent-organization

SV

cris.virtual.parent-organization

EPFL

cris.virtual.sciperId

220184

cris.virtual.unitId

12556

cris.virtual.unitManager

Courtine, Grégoire

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7d54bfee-3771-4575-a488-d175414a1bc4

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7d54bfee-3771-4575-a488-d175414a1bc4

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7d54bfee-3771-4575-a488-d175414a1bc4

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5f2e212f-5ee3-427e-91dd-5bc58836f1d8

cris.virtualsource.parent-organization

5f2e212f-5ee3-427e-91dd-5bc58836f1d8

cris.virtualsource.parent-organization

5f2e212f-5ee3-427e-91dd-5bc58836f1d8

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5f2e212f-5ee3-427e-91dd-5bc58836f1d8

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7d54bfee-3771-4575-a488-d175414a1bc4

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7d54bfee-3771-4575-a488-d175414a1bc4

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5f2e212f-5ee3-427e-91dd-5bc58836f1d8

datacite.rights

metadata-only

dc.contributor.author

Yin, Ming

dc.contributor.author

Borton, David A.

dc.contributor.author

Komar, Jacob

dc.contributor.author

Agha, Naubahar

dc.contributor.author

Lu, Yao

dc.contributor.author

Li, Hao

dc.contributor.author

Laurens, Jean

dc.contributor.author

Lang, Yiran

dc.contributor.author

Li, Qin

dc.contributor.author

Bull, Christopher

dc.contributor.author

Larson, Lawrence

dc.contributor.author

Rosler, David

dc.contributor.author

Bezard, Erwan

dc.contributor.author

Courtine, Gregoire

dc.contributor.author

Nurmikko, Arto V.

dc.date.accessioned

2015-02-20T10:05:37

dc.date.available

2015-02-20T10:05:37

dc.date.created

2015-02-20

dc.date.issued

2014

dc.date.modified

2025-01-23T20:51:58.802410Z

dc.description.abstract

Brain recordings in large animal models and humans typically rely on a tethered connection, which has restricted the spectrum of accessible experimental and clinical applications. To overcome this limitation, we have engineered a compact, lightweight, high data rate wireless neurosensor capable of recording the full spectrum of electrophysiological signals from the cortex of mobile subjects. The wireless communication system exploits a spatially distributed network of synchronized receivers that is scalable to hundreds of channels and vast environments. To demonstrate the versatility of our wireless neurosensor, we monitored cortical neuron populations in freely behaving nonhuman primates during natural locomotion and sleep-wake transitions in ecologically equivalent settings. The interface is electrically safe and compatible with the majority of existing neural probes, which may support previously inaccessible experimental and clinical research.

dc.description.sponsorship

UPCOURTINE

dc.identifier.doi

10.1016/j.neuron.2014.11.010

dc.identifier.isi

WOS:000346574500010

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/111404

dc.publisher

Cell Press

dc.publisher.place

Cambridge

dc.relation.issn

0896-6273

dc.relation.journal

Neuron

dc.size

13

dc.title

Wireless Neurosensor for Full-Spectrum Electrophysiology Recordings during Free Behavior

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

dspace.legacy.oai-identifier

oai:infoscience.tind.io:205469

epfl.legacy.itemtype

Journal Articles

epfl.legacy.submissionform

ARTICLE

epfl.oai.currentset

OpenAIREv4

epfl.oai.currentset

SV

epfl.oai.currentset

article

epfl.peerreviewed

REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.endPage

1182

oaire.citation.issue

6

oaire.citation.startPage

1170

oaire.citation.volume

84

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