Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze

Healthy young adults use different strategies when navigating in a virtual maze. Spatial strategies involve using environmental landmarks while response strategies involve executing a series of movements from specific stimuli. Neuroimaging studies previously confirmed that people who use spatial str...

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Main Authors: Kyoko eKonishi, Veronique D Bohbot
Format: Article
Language:English
Published: Frontiers Media S.A. 2013-02-01
Series:Frontiers in Aging Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fnagi.2013.00001/full
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spelling doaj-97ae7417d47f4083a0a66af6b10e02ae2020-11-24T21:02:55ZengFrontiers Media S.A.Frontiers in Aging Neuroscience1663-43652013-02-01510.3389/fnagi.2013.0000128885Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual mazeKyoko eKonishi0Veronique D Bohbot1Douglas Mental Health University InstituteDouglas Mental Health University InstituteHealthy young adults use different strategies when navigating in a virtual maze. Spatial strategies involve using environmental landmarks while response strategies involve executing a series of movements from specific stimuli. Neuroimaging studies previously confirmed that people who use spatial strategies show increased activity and grey matter in the hippocampus, while those who use response strategies show increased activity and grey matter in caudate nucleus (Bohbot, Lerch, Thorndycraft, Iaria, & Zijdenbos, 2007; Iaria, Petrides, Dagher, Pike, & Bohbot, 2003). A growing number of studies report that cognitive decline that occurs with normal aging is correlated with a decrease in volume of the hippocampus. Here, we used voxel-based morphometry to examine whether spatial strategies in aging are correlated with greater grey matter in the hippocampus, as found in our previous study with healthy young participants. Forty-five healthy older adults were tested on a virtual navigation task that allows spatial and response strategies. All participants learn the task to criterion after which a special probe trial that assesses spatial and response strategies is given. Results show that spontaneous spatial memory strategies, and not performance on the navigation task, positively correlate with grey matter in the hippocampus. Since numerous studies have shown that a decrease in the volume of the hippocampus correlates with cognitive deficits during normal aging and increases the risks of ensuing dementia, the current results suggest that older people who use their spatial memory strategies in their everyday lives may have increased grey matter in the hippocampus and enhance their probability of healthy and successful aging.http://journal.frontiersin.org/Journal/10.3389/fnagi.2013.00001/fullAgingHippocampusspatial memorynavigationradial maze
collection DOAJ
language English
format Article
sources DOAJ
author Kyoko eKonishi
Veronique D Bohbot
spellingShingle Kyoko eKonishi
Veronique D Bohbot
Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
Frontiers in Aging Neuroscience
Aging
Hippocampus
spatial memory
navigation
radial maze
author_facet Kyoko eKonishi
Veronique D Bohbot
author_sort Kyoko eKonishi
title Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
title_short Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
title_full Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
title_fullStr Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
title_full_unstemmed Spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
title_sort spatial navigational strategies correlate with grey matter in the hippocampus of healthy older adults tested in a virtual maze
publisher Frontiers Media S.A.
series Frontiers in Aging Neuroscience
issn 1663-4365
publishDate 2013-02-01
description Healthy young adults use different strategies when navigating in a virtual maze. Spatial strategies involve using environmental landmarks while response strategies involve executing a series of movements from specific stimuli. Neuroimaging studies previously confirmed that people who use spatial strategies show increased activity and grey matter in the hippocampus, while those who use response strategies show increased activity and grey matter in caudate nucleus (Bohbot, Lerch, Thorndycraft, Iaria, & Zijdenbos, 2007; Iaria, Petrides, Dagher, Pike, & Bohbot, 2003). A growing number of studies report that cognitive decline that occurs with normal aging is correlated with a decrease in volume of the hippocampus. Here, we used voxel-based morphometry to examine whether spatial strategies in aging are correlated with greater grey matter in the hippocampus, as found in our previous study with healthy young participants. Forty-five healthy older adults were tested on a virtual navigation task that allows spatial and response strategies. All participants learn the task to criterion after which a special probe trial that assesses spatial and response strategies is given. Results show that spontaneous spatial memory strategies, and not performance on the navigation task, positively correlate with grey matter in the hippocampus. Since numerous studies have shown that a decrease in the volume of the hippocampus correlates with cognitive deficits during normal aging and increases the risks of ensuing dementia, the current results suggest that older people who use their spatial memory strategies in their everyday lives may have increased grey matter in the hippocampus and enhance their probability of healthy and successful aging.
topic Aging
Hippocampus
spatial memory
navigation
radial maze
url http://journal.frontiersin.org/Journal/10.3389/fnagi.2013.00001/full
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