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Entorhinal‐based path integration selectively predicts midlife risk of Alzheimer's disease

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Peer-reviewed

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Abstract

INTRODUCTION: Entorhinal cortex (EC) is the first cortical region to exhibit neurodegeneration in Alzheimer's disease (AD), associated with EC grid cell dysfunction. Given the role of grid cells in path integration (PI)–based spatial behaviors, we predicted that PI impairment would represent the first behavioral change in adults at risk of AD. METHODS: We compared immersive virtual reality (VR) PI ability to other cognitive domains in 100 asymptomatic midlife adults stratified by hereditary and physiological AD risk factors. In some participants, behavioral data were compared to 7T magnetic resonance imaging (MRI) measures of brain structure and function. RESULTS: Midlife PI impairments predicted both hereditary and physiological AD risk, with no corresponding multi‐risk impairment in episodic memory or other spatial behaviors. Impairments associated with altered functional MRI signal in the posterior‐medial EC. DISCUSSION: Altered PI may represent the transition point from at‐risk state to disease manifestation in AD, prior to impairment in other cognitive domains.

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Publication status: Published


Funder: Alzheimer's Research UK


Funder: Dementia's Platform UK

Journal Title

Alzheimer's & Dementia

Conference Name

Journal ISSN

1552-5260
1552-5279

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Except where otherwised noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/
Sponsorship
Merck Investigator Studies Program (MISP‐57175)
Alzheimer's Society (178, 264, 397)
UK National Institute for Health Research Clinical Research Network and Biomedical Research Centre Cambridge (1215‐20014)
US Alzheimer's Association (TriBEKa‐17‐519007)
Wellcome (098436/Z/12/B, 202805/Z/16/Z)
UK Medical Research Council (SUAG/046 G101400)
National Institute of Neurological Disorders and Stroke of the National Institutes of Health rant (K99NS126715)