Center for Cognitive and Computational Neuroscience, Complutense University of Madrid, Madrid, Spain.
Achucarro Basque Center for Neuroscience, Leioa, Spain.
Sci Rep. 2023 Jun 11;13(1):9489. doi: 10.1038/s41598-023-34744-1.
Electroencephalography (EEG) can detect changes in cerebral activity during spaceflight. This study evaluates the effect of spaceflight on brain networks through analysis of the Default Mode Network (DMN)'s alpha frequency band power and functional connectivity (FC), and the persistence of these changes. Five astronauts' resting state EEGs under three conditions were analyzed (pre-flight, in-flight, and post-flight). DMN's alpha band power and FC were computed using eLORETA and phase-locking value. Eyes-opened (EO) and eyes-closed (EC) conditions were differentiated. We found a DMN alpha band power reduction during in-flight (EC: p < 0.001; EO: p < 0.05) and post-flight (EC: p < 0.001; EO: p < 0.01) when compared to pre-flight condition. FC strength decreased during in-flight (EC: p < 0.01; EO: p < 0.01) and post-flight (EC: ns; EO: p < 0.01) compared to pre-flight condition. The DMN alpha band power and FC strength reduction persisted until 20 days after landing. Spaceflight caused electrocerebral alterations that persisted after return to earth. Periodic assessment by EEG-derived DMN analysis has the potential to become a neurophysiologic marker of cerebral functional integrity during exploration missions to space.
脑电图(EEG)可检测到飞行过程中大脑活动的变化。本研究通过分析默认模式网络(DMN)的阿尔法频段功率和功能连接(FC)以及这些变化的持续性,评估飞行对大脑网络的影响。分析了 5 名宇航员在三种情况下的静息状态 EEG(飞行前、飞行中和飞行后)。使用 eLORETA 和锁相值计算 DMN 的阿尔法频段功率和 FC。区分睁眼(EO)和闭眼(EC)条件。我们发现,与飞行前相比,飞行中(EC:p<0.001;EO:p<0.05)和飞行后(EC:p<0.001;EO:p<0.01)DMN 的阿尔法频段功率降低。与飞行前相比,飞行中(EC:p<0.01;EO:p<0.01)和飞行后(EC:ns;EO:p<0.01)FC 强度降低。DMN 阿尔法频段功率和 FC 强度降低持续到着陆后 20 天。飞行导致了返回地球后仍持续存在的脑电图改变。通过 EEG 衍生的 DMN 分析进行定期评估,有可能成为探索太空任务中大脑功能完整性的神经生理标志物。