Brain activation during visual working memory correlates with behavioral mobility performance in older adults

Functional mobility and cognitive function often decline with age. We previously found that functional mobility as measured by the Timed Up and Go Test (TUG) was associated with cognitive performance for visually-encoded (i.e. for location and face) working memory (WM) in older adults. This suggests...

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Main Authors: Toshikazu eKawagoe, Maki eSuzuki, Shu eNishiguchi, Nobuhito eAbe, Yuki eOtsuka, Ryusuke eNakai, Minoru eYamada, Sakiko eYoshikawa, Kaoru eSekiyama
Format: Article
Language:English
Published: Frontiers Media S.A. 2015-09-01
Series:Frontiers in Aging Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fnagi.2015.00186/full
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spelling doaj-d82e5741f8664c35940429b0bce81d752020-11-24T23:09:47ZengFrontiers Media S.A.Frontiers in Aging Neuroscience1663-43652015-09-01710.3389/fnagi.2015.00186151233Brain activation during visual working memory correlates with behavioral mobility performance in older adultsToshikazu eKawagoe0Toshikazu eKawagoe1Maki eSuzuki2Shu eNishiguchi3Shu eNishiguchi4Nobuhito eAbe5Yuki eOtsuka6Ryusuke eNakai7Minoru eYamada8Sakiko eYoshikawa9Kaoru eSekiyama10Kumamoto UniversityJapan Society for the Promotion of ScienceKumamoto UniversityKyoto UniversityJapan Society for the Promotion of ScienceKyoto UniversityKyoto UniversityKyoto UniversityKyoto UniversityKyoto UniversityKumamoto UniversityFunctional mobility and cognitive function often decline with age. We previously found that functional mobility as measured by the Timed Up and Go Test (TUG) was associated with cognitive performance for visually-encoded (i.e. for location and face) working memory (WM) in older adults. This suggests a common neural basis between TUG and visual WM. To elucidate this relationship further, the present study aimed to examine the neural basis for the WM-mobility association. In accordance with the well-known neural compensation model in aging, we hypothesized that attentional brain activation for easy WM would increase in participants with lower mobility. The data from 32 healthy older adults were analyzed, including brain activation during easy WM tasks via functional Magnetic Resonance Imaging and mobility performance via both TUG and a simple walking test. WM performance was significantly correlated with TUG but not with simple walking. Some prefrontal brain activations during WM were negatively correlated with TUG performance, while positive correlations were found in subcortical structures including the thalamus, putamen and cerebellum. Moreover, activation of the subcortical regions was significantly correlated with WM performance, with less activation for lower WM performers. These results indicate that older adults with lower mobility used more cortical (frontal) and fewer subcortical resources for easy WM tasks. To date, the frontal compensation has been proposed separately in the motor and cognitive domains, which have been assumed to compensate for dysfunction of the other brain areas; however, such dysfunction was less clear in previous studies.The present study observed such dysfunction as degraded activation associated with lower performance, which was found in the subcortical regions. We conclude that a common dysfunction -compensation activation pattern is likely the neural basis for the association between visual WM and functional mobility.http://journal.frontiersin.org/Journal/10.3389/fnagi.2015.00186/fullAgingfMRIworking memoryCompensationfunctional mobilityAge-related change
collection DOAJ
language English
format Article
sources DOAJ
author Toshikazu eKawagoe
Toshikazu eKawagoe
Maki eSuzuki
Shu eNishiguchi
Shu eNishiguchi
Nobuhito eAbe
Yuki eOtsuka
Ryusuke eNakai
Minoru eYamada
Sakiko eYoshikawa
Kaoru eSekiyama
spellingShingle Toshikazu eKawagoe
Toshikazu eKawagoe
Maki eSuzuki
Shu eNishiguchi
Shu eNishiguchi
Nobuhito eAbe
Yuki eOtsuka
Ryusuke eNakai
Minoru eYamada
Sakiko eYoshikawa
Kaoru eSekiyama
Brain activation during visual working memory correlates with behavioral mobility performance in older adults
Frontiers in Aging Neuroscience
Aging
fMRI
working memory
Compensation
functional mobility
Age-related change
author_facet Toshikazu eKawagoe
Toshikazu eKawagoe
Maki eSuzuki
Shu eNishiguchi
Shu eNishiguchi
Nobuhito eAbe
Yuki eOtsuka
Ryusuke eNakai
Minoru eYamada
Sakiko eYoshikawa
Kaoru eSekiyama
author_sort Toshikazu eKawagoe
title Brain activation during visual working memory correlates with behavioral mobility performance in older adults
title_short Brain activation during visual working memory correlates with behavioral mobility performance in older adults
title_full Brain activation during visual working memory correlates with behavioral mobility performance in older adults
title_fullStr Brain activation during visual working memory correlates with behavioral mobility performance in older adults
title_full_unstemmed Brain activation during visual working memory correlates with behavioral mobility performance in older adults
title_sort brain activation during visual working memory correlates with behavioral mobility performance in older adults
publisher Frontiers Media S.A.
series Frontiers in Aging Neuroscience
issn 1663-4365
publishDate 2015-09-01
description Functional mobility and cognitive function often decline with age. We previously found that functional mobility as measured by the Timed Up and Go Test (TUG) was associated with cognitive performance for visually-encoded (i.e. for location and face) working memory (WM) in older adults. This suggests a common neural basis between TUG and visual WM. To elucidate this relationship further, the present study aimed to examine the neural basis for the WM-mobility association. In accordance with the well-known neural compensation model in aging, we hypothesized that attentional brain activation for easy WM would increase in participants with lower mobility. The data from 32 healthy older adults were analyzed, including brain activation during easy WM tasks via functional Magnetic Resonance Imaging and mobility performance via both TUG and a simple walking test. WM performance was significantly correlated with TUG but not with simple walking. Some prefrontal brain activations during WM were negatively correlated with TUG performance, while positive correlations were found in subcortical structures including the thalamus, putamen and cerebellum. Moreover, activation of the subcortical regions was significantly correlated with WM performance, with less activation for lower WM performers. These results indicate that older adults with lower mobility used more cortical (frontal) and fewer subcortical resources for easy WM tasks. To date, the frontal compensation has been proposed separately in the motor and cognitive domains, which have been assumed to compensate for dysfunction of the other brain areas; however, such dysfunction was less clear in previous studies.The present study observed such dysfunction as degraded activation associated with lower performance, which was found in the subcortical regions. We conclude that a common dysfunction -compensation activation pattern is likely the neural basis for the association between visual WM and functional mobility.
topic Aging
fMRI
working memory
Compensation
functional mobility
Age-related change
url http://journal.frontiersin.org/Journal/10.3389/fnagi.2015.00186/full
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