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极端环境对认知功能的影响:南极洲高海拔地区的纵向研究

Extreme Environment Effects on Cognitive Functions: A Longitudinal Study in High Altitude in Antarctica.

作者信息

Barkaszi Irén, Takács Endre, Czigler István, Balázs László

机构信息

Environmental Adaptation and Space Research Group, Institute of Cognitive Neuroscience and Psychology, Research Centre for Natural Sciences, Hungarian Academy of SciencesBudapest, Hungary; Department of Experimental Psychology, Institute of Psychology, Debrecen UniversityDebrecen, Hungary.

Environmental Adaptation and Space Research Group, Institute of Cognitive Neuroscience and Psychology, Research Centre for Natural Sciences, Hungarian Academy of SciencesBudapest, Hungary; Faculty of Education and Psychology, Eötvös Loránd UniversityBudapest, Hungary.

出版信息

Front Hum Neurosci. 2016 Jun 30;10:331. doi: 10.3389/fnhum.2016.00331. eCollection 2016.

Abstract

This paper focuses on the impact of long-term Antarctic conditions on cognitive processes. Behavioral responses and event-related potentials were recorded during an auditory distraction task and an attention network paradigm. Participants were members of the over-wintering crew at Concordia Antarctic Research Station. Due to the reduced partial pressure of oxygen this environment caused moderate hypoxia. Beyond the hypoxia, the fluctuation of sunshine duration, isolation and confinement were the main stress factors of this environment. We compared 6 measurement periods completed during the campaign. Behavioral responses and N1/MMN (mismatch negativity), N1, N2, P3, RON (reorientation negativity) event-related potential components have been analyzed. Reaction time decreased in both tasks in response to repeated testing during the course of mission. The alerting effect increased, the inhibition effect decreased and the orienting effect did not change in the ANT task. Contrary to our expectations the N2, P3, RON components related to the attentional functions did not show any significant changes. Changes attributable to early stages of information processing were observed in the ANT task (N1 component) but not in the distraction task (N1/MMN). The reaction time decrements and the N1 amplitude reduction in ANT task could be attributed to sustained effect of practice. We conclude that the Antarctic conditions had no negative impacts on cognitive activity despite the presence of numerous stressors.

摘要

本文聚焦于长期南极环境条件对认知过程的影响。在一项听觉分心任务和一个注意网络范式中记录了行为反应和事件相关电位。参与者是康科迪亚南极研究站的越冬人员。由于该环境中氧气分压降低,导致中度缺氧。除了缺氧,日照时长的波动、与世隔绝和禁闭是该环境的主要压力因素。我们比较了考察期间完成的6个测量阶段。分析了行为反应以及N1/MMN(失配负波)、N1、N2、P3、RON(重新定向负波)等事件相关电位成分。在任务执行过程中,两项任务的反应时间均因重复测试而缩短;在注意网络任务中,警觉效应增强、抑制效应减弱,定向效应未发生变化。与我们的预期相反,与注意功能相关的N2、P3、RON成分未显示出任何显著变化。在注意网络任务(N1成分)中观察到了归因于信息处理早期阶段的变化,但在分心任务(N1/MMN)中未观察到。注意网络任务中的反应时间缩短和N1波幅减小可归因于练习的持续效应影响。我们得出结论,尽管存在众多压力源,但南极环境条件对认知活动并无负面影响。

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