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Updated: Jul 27, 2026

Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions
Published on: May 23, 2011
Thirty minutes of daily artificial gravity does not mitigate head down tilt induced brain activity changes during
Grant D Tays1, Heather R McGregor1, Yiri E De Dios2
1Department of Applied Physiology and Kinesiology, University of Florida, Gainesville, FL, United States.
Introduction:
Studies have shown that microgravity results in high dual task costs when crewmembers perform cognitive-motor dual tasking. Head-down tilt bedrest (HDBR) has been widely used as a spaceflight analog environment, recreating some of the sensorimotor and cognitive changes, headward fluid shifts, and unloading of bones and muscles. Here, we examined whether artificial gravity (AG) mitigates changes in cognitive performance and associated brain activity that occur in the HDBR environment.
Methods:
We tested one group of participants (n = 16) that received 30 min of daily AG (half received it continuously while the other half experienced it in 5-min bouts), and one group that did not (n = 8 controls) during the course of 60 days HDBR. Participants performed spatial working memory and cognitive-motor dual tasking prior to entering HDBR, during HDBR and post-HDBR.
Results:
Brain activation patterns associated with these two tasks changed with HDBR, but there was no difference between the AG and control groups. Compensatory brain-behavioral change-change correlations were observed, where those who increased activation the most had the least decrease in motor tapping accuracy from pre-HDBR to late-HDBR.
Discussion:
These results suggest that AG does not reduce the need for compensatory brain responses that occur with HDBR, but longer duration and/or more optimal AG phasing may be required.
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