Elevating understanding: Linking high-altitude hypoxia to brain aging through EEG functional connectivity and spectral analyses

Whitaker, Grace Alma; Orio, Patricio

Abstract

High-altitude hypoxia triggers brain function changes reminiscent of those in healthy aging and Alzheimer’s disease, compromising cognition and executive functions. Our study sought to validate high-altitude hypoxia as a model for assessing brain activity disruptions akin to aging. We collected EEG data from 16 healthy volunteers during acute high-altitude hypoxia (at 4,000 masl) and at sea level, focusing on relative changes in power and aperiodic slope of the EEG spectrum due to hypoxia. Additionally, we examined functional connectivity using wPLI, and functional segregation and integration using graph theory tools. High altitude led to slower brain oscillations, that is, increased ? and reduced ? power, and flattened the 1/f aperiodic slope, indicating higher electrophysiological noise, akin to healthy aging. Notably, functional integration strengthened in the ? band, exhibiting unique topographical patterns at the subnetwork level, including increased frontocentral and reduced occipitoparietal integration. Moreover, we discovered significant correlations between subjects’ age, 1/f slope, ? band integration, and observed robust effects of hypoxia after adjusting for age. Our findings shed light on how reduced oxygen levels at high altitudes influence brain activity patterns resembling those in neurodegenerative disorders and aging, making high-altitude hypoxia a promising model for comprehending the brain in health and disease. © 2024 Massachusetts Institute of Technology.

Más información

Título según WOS: Elevating understanding: Linking high-altitude hypoxia to brain aging through EEG functional connectivity and spectral analyses
Título según SCOPUS: Elevating understanding: Linking high-altitude hypoxia to brain aging through EEG functional connectivity and spectral analyses
Título de la Revista: Network Neuroscience
Volumen: 8
Número: 1
Editorial: MIT Press Journals
Fecha de publicación: 2024
Página de inicio: 275
Página final: 292
Idioma: English
DOI:

10.1162/netn_a_00352

Notas: ISI, SCOPUS