Key Laboratory of Brain, Cognition and Education Sciences, Ministry of Education, South China Normal University, Guangzhou, China.
Key Laboratory of High Altitudes Brain Science and Environmental Acclimation, Tibet University, Lhasa, China.
Eur J Neurosci. 2024 Nov;60(10):6525-6542. doi: 10.1111/ejn.16573. Epub 2024 Oct 18.
Attention is one of the basic cognitive functions sensitive to high altitude, and most studies have focussed on exposure times of approximately 3 years; however, it is unclear how attention changes in migrants who have lived and worked at high altitude for nearly 20 years. We explored the dynamics of attentional networks and neurophysiological mechanisms in migrants over 3-20 years using the Attentional Network Test combined with Electrocardiograph and Electroencephalography and found a consistent quadratic correlation between exposure and executive control efficiency, P3 amplitude and heart rate variability (HRV), with a decrease followed by an increase/relative stability, with approximately 10 years being the breakpoint. However, neither linear nor quadratic trajectories were observed for the alerting and orienting network. Mediation analysis revealed that the P3 amplitude mediated the decrease and increase in executive control efficiency with exposure time depends on the breakpoint. Correlations between HRV and executive control efficiency and P3 amplitude suggest that U-shaped changes in executive control in migrants may be related to body homeostasis maintained by the autonomic nervous system, and that P3 amplitude may serve as a neurophysiological marker of migrants' adaptation/recovery from high-altitude exposure.
注意力是对高原敏感的基本认知功能之一,大多数研究都集中在大约 3 年的暴露时间上;然而,对于在高海拔地区生活和工作了近 20 年的移民,注意力如何变化尚不清楚。我们使用注意力网络测试(Attentional Network Test)结合心电图(ECG)和脑电图(EEG),探索了超过 3-20 年的移民注意力网络和神经生理机制,发现暴露和执行控制效率、P3 振幅和心率变异性(HRV)之间存在一致的二次相关关系,呈先下降后增加/相对稳定的趋势,约 10 年为转折点。然而,警觉和定向网络既没有线性也没有二次轨迹。中介分析表明,P3 振幅介导了暴露时间与执行控制效率的下降和增加,这取决于转折点。HRV 与执行控制效率和 P3 振幅之间的相关性表明,移民执行控制的 U 型变化可能与自主神经系统维持的身体内稳态有关,而 P3 振幅可能是移民从高原暴露中适应/恢复的神经生理标志物。