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Effect of Mild Hypoxia on Working Memory, Complex Logical Reasoning, and Risk Judgment

机译:轻度缺氧对工作记忆,复杂逻辑推理和风险判断的影响

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摘要

Mild hypoxia, typically equivalent to a pressurized aircraft cabin altitude of 2,438 m (8,000 ft), does not generally affect well-learned cognitive, vigilance, and perceptual-motor performance. Learning and novel and complex cognitive tasks involving multiple demands, however, might be impaired. This study evaluated whether complex cognition-as assessed by complex reasoning, multiple memory, and risk judgment-was impaired during mild hypoxia. Using a normobaric single-blind crossover design, 25 healthy nonsmoking male participants breathed normoxic (F_iO_2 = 0.206) or hypoxic air (F_iO_2 = 0.143) equivalent to 2,438 m for 2 hr and performed the following tasks at baseline, 30 min, and 90 min: (a) a complex logical reasoning task that assessed accuracy, response time, and a reasoning quality index for easy (nonconflict valid), difficult (nonconflict invalid), fairly difficult (conflict valid), and very difficult (conflict invalid) syllogisms; (b) a multiple memory test that assessed sentence judgment error, working memory span, and prospective memory; and (c) a simple vigilance psychomotor task that assessed the frequency and mean time that a disc was outside a target area and braking reaction time. They also completed a self-perceived risk judgement questionnaire near the end of each exposure. After 90 min, the mean change in working memory span for mild hypoxia (M = 0.9, SD = 4.6) was significantly less than for normoxia (M = 4.4, SD = 7.2). The reasoning quality index for conflict invalid syllogisms for mild hypoxia (M = 0.22, SD = 0.29) was marginally significantly less than for normoxia (M = 0.39, SD = 0.35). The chances of these findings occurring by chance cannot be discounted, but are small. Although this study suggests that mild hypoxia might impair working memory and complex logical reasoning involving difficult conflicts, further studies using more discerning tests of cognition are warranted.
机译:轻度缺氧通常相当于2438 m(8,000 ft)的加压飞机机舱高度,通常不会影响学习良好的认知,警觉和知觉运动能力。但是,涉及多种需求的学习以及新颖而复杂的认知任务可能会受到影响。这项研究评估了在轻度缺氧期间,复杂认知(通过复杂推理,多重记忆和风险判断评估)是否受损。使用常压单盲交叉设计,25名健康的非吸烟男性参与者呼吸了相当于2438 m的常氧(F_iO_2 = 0.206)或低氧空气(F_iO_2 = 0.143)2小时,并在基线,30分钟和90分钟时执行以下任务:(a)一项复杂的逻辑推理任务,评估了准确性,响应时间和推理质量指标,以实现简单(无冲突有效),困难(无冲突无效),相当困难(冲突有效)和非常困难(冲突无效)三段论; (b)评估句子判断错误,工作记忆跨度和预期记忆的多重记忆测试; (c)一个简单的警惕性精神运动任务,该任务评估了椎间盘在目标区域之外的频率和平均时间以及制动反应时间。他们还在每次接触即将结束时完成了一个自我认知的风险判断调查表。 90分钟后,轻度缺氧(M = 0.9,SD = 4.6)的工作记忆跨度的平均变化显着小于常氧(M = 4.4,SD = 7.2)。轻度低氧(M = 0.22,SD = 0.29)的冲突无效三段论的推理质量指数略低于正常氧(M = 0.39,SD = 0.35)。这些发现偶然发生的机会不可小视,但很小。尽管这项研究表明轻度缺氧可能会损害工作记忆和涉及困难冲突的复杂逻辑推理,但仍需要使用更具洞察力的认知测试进行进一步研究。

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    Centre for Ergonomics, Occupational Safety and Health, School of Public Health, College of Health, Massey University, Private Bag 11222, Palmerston North, New Zealand;

    School of Psychology, Massey University, New Zealand;

    School of Aviation, Massey University, New Zealand;

    School of Sport and Exercise, Massey University, New Zealand;

    School of Sport and Exercise, Massey University, New Zealand;

    School of Sport and Exercise, Massey University, New Zealand;

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