Paradoxical improvement of cognitive control in older adults under dual-task walking conditions is associated with more flexible reallocation of neural resources: A Mobile Brain-Body Imaging (MoBI) study.

biorxiv(2022)

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摘要
Combining walking with a demanding cognitive task is traditionally expected to elicit decrements in gait and/or cognitive task performance. However, it was recently shown that, in a cohort of young adults, most participants paradoxically improved performance when walking was added to performance of a Go/NoGo response inhibition task. The present study aims to extend these previous findings to an older adult cohort, to investigate whether this paradoxical improvement when dual-tasking is observed in healthy older adults. Mobile Brain/Body Imaging (MoBI) was used to record electroencephalographic (EEG) activity, three-dimensional (3D) gait kinematics and behavioral responses in the Go/NoGo task, during sitting or walking on a treadmill, in 34 young adults and 37 older adults. Increased response accuracy during walking, independent of age, was found to correlate with slower responses to stimuli and with walking-related EEG amplitude modulations over latencies and topographies related to the cognitive component of inhibition. On the other hand, aging, independent of response accuracy during walking, was found to correlate with slower treadmill walking speeds and attenuation in walking-related EEG amplitude modulations over latencies and topographies associated with the motor component of inhibition. Older adults whose response accuracy improved during walking manifested neural signatures of both behavioral improvement and aging, suggesting that their flexibility in reallocating neural resources while walking might be maintained for the cognitive but not for the motor inhibitory component. These distinct neural signatures of aging and behavior can potentially be used to identify super-agers, or individuals at risk for cognitive decline due to aging or neurodegenerative disease. ### Competing Interest Statement The authors have declared no competing interest.
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关键词
EEG,Response inhibition,Behavior,Gait,Aging,N2/P3
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