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Updated: Sep 2, 2026

Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions
Published on: May 23, 2011
Chronic high-altitude exposure is associated with an internally-directed perceptual shift: differential links with
Xia-Qian Jian1, Nian-Nian Wang2, Xiao-Yan Huang1
1School of Psychology, Center for Studies of Psychological Application, and Guangdong Key Laboratory of Mental Health and Cognitive Science, South China Normal University, Guangzhou, China.
Background:
High-altitude environments impose unique physiological and cognitive demands that may reorganize brain-body communication. Our study investigates whether chronic high-altitude exposure is associated with a shift in perceptual priority toward internally-directed processing, rather than merely modifying external processing speed or accuracy.
Methods:
We recruited 112 Han immigrants residing at high altitude to complete assessments of visual imagery vividness under eyes-open (externally-oriented) and eyes-closed (internally-oriented) conditions, along with attention network tests. We also collected a comprehensive panel of multimodal physiological indices, including markers of inflammation, erythrocytic parameters, liver function, cardiovascular metrics, and heart rate variability (as a proxy for autonomic regulation). Analyses employed latent profile analysis and regression mixture modeling.
Results:
We found that prolonged high-altitude exposure showed a trend toward selectively enhancing internally-oriented imagery vividness under eyes-closed conditions, while externally-oriented processing remained stable. Critically, enhanced internally-oriented imagery was differentially associated with improved orienting attention, whereas externally-oriented imagery was linked to alerting attention, suggesting a functional differentiation in attentional reorganization. Physiologically, interleukin-6 levels were associated with externally-oriented vividness, whereas erythrocytic heterogeneity, liver function, and high-frequency heart rate variability (an index of parasympathetic-associated cardiac regulation) selectively correlated with internally-oriented processing.
Conclusion:
These results suggest that chronic high-altitude exposure may be associated with a reweighting of perceptual resource allocation toward an internally-oriented processing bias, with parasympathetic-associated autonomic regulation as a potential brain-body integrative mechanism. This work extends prior findings by proposing a shift in perceptual priority rather than merely processing efficiency, advancing a multi-system framework for understanding human brain-body adaptation in extreme environments.
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