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Differential impact of acute hypoxia on event related potentials: impaired task-irrelevant, but preserved task-relevant processing and response inhibition

机译:急性缺氧对事件相关潜力的差异影响:任务无关的受损,但保存的任务相关的处理和反应抑制

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摘要

The current study investigated how experimentally induced acute normobaric hypoxia affects attentional control functions during easy, monotonous visual sustained attention and response inhibition (modified Continuous Performance Task) and executive control tasks (number-size Stroop task). Along with behavioral efficiency, task relevant and task-irrelevant information processing were investigated by measuring event related brain potentials (ERP) evoked by target stimuli (Target P3), task-relevant stimuli with no response needed (NoGo P3), and task-irrelevant novel stimuli (Novelty P3) during acute hypoxia exposure. Normobaric hypoxia was induced by adjusting the O-2 content of the breathing mixture to obtain 80% peripheral oxygen saturation, equivalent of 5500 m above sea level. Here we report decreased Novelty P3 during acute normobaric hypoxia exposure, while Target P3 and NoGo P3, as well as behavioral efficiency remained intact. Our paper is the first to provide evidence for impaired novelty processing along with intact task-relevant information processing and response inhibition during normobaric hypoxic exposure.
机译:目前的研究调查了实验诱导的急性正常缺氧在简单,单调的视觉持续关注和反应抑制(修改的连续性能任务)和执行控制任务(数量Troop任务)中影响注意力控制功能。随着行为效率,通过测量由目标刺激(目标P3)引起的事件相关的脑电位(ERP),任务相关的刺激而没有所需的任务相关刺激(Nogo P3)和任务无关的任务相关刺激,以及任务 - 无关紧要的任务相关和任务 - 无关的信息处理。急性缺氧暴露过程中的新型刺激(新奇P3)。通过调节呼吸混合物的O-2含量以获得80%的外周氧饱和度,相当于海拔5500m的常规缺氧诱导。在这里,我们报告在急性正常缺氧暴露期间的新颖性P3减少,而靶P3和Nogo P3以及行为效率保持完整。我们的论文是第一个提供了在正常缺氧暴露期间具有完整的任务相关信息处理和反应抑制的新型新加工障碍的证据。

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