Dynamic neural representations of memory and space during human ambulatory navigation

dc.contributor.author

Maoz, Sabrina LL

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Stangl, Matthias

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Topalovic, Uros

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Batista, Daniel

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Hiller, Sonja

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Aghajan, Zahra M

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Knowlton, Barbara

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Stern, John

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Langevin, Jean-Philippe

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Fried, Itzhak

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Eliashiv, Dawn

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Suthana, Nanthia

dc.date.accessioned

2024-11-22T17:05:11Z

dc.date.available

2024-11-22T17:05:11Z

dc.description.abstract

<jats:title>Abstract</jats:title><jats:p>Our ability to recall memories of personal experiences is an essential part of daily life. These episodic memories often involve movement through space and thus require continuous encoding of one’s position relative to the surrounding environment. The medial temporal lobe (MTL) is thought to be critically involved, based on studies in freely moving rodents and stationary humans. However, it remains unclear if and how the MTL represents both space and memory especially during physical navigation, given challenges associated with deep brain recordings in humans during movement. We recorded intracranial electroencephalographic (iEEG) activity while participants completed an ambulatory spatial memory task within an immersive virtual reality environment. MTL theta activity was modulated by successful memory retrieval or spatial positions within the environment, depending on dynamically changing behavioral goals. Altogether, these results demonstrate how human MTL oscillations can represent both memory and space in a temporally flexible manner during freely moving navigation.</jats:p>

dc.identifier.issn

2041-1723

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https://hdl.handle.net/10161/31667

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en

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Springer Science and Business Media LLC

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Nature Communications

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10.1038/s41467-023-42231-4

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https://creativecommons.org/licenses/by-nc/4.0

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Dynamic neural representations of memory and space during human ambulatory navigation

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Journal article

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Suthana, Nanthia|0000-0002-8796-3277

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1

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Duke

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School of Medicine

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Clinical Science Departments

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Neurosurgery

pubs.publication-status

Published online

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14

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