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Executive Functions of Divers Are Selectively Impaired at 20-Meter Water Depth

机译:在20米水深处有选择地削弱潜水员的执行功能

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摘要

Moving and acting underwater within recreational or occupational activities require intact executive functions, since they subserve higher cognitive functions such as successful self-regulation, coping with novel situations, and decision making; all of which could be influenced by nitrogen narcosis due to elevated partial pressure under water. However, specific executive functions that could provide a differentiated view on humans’ cognitive performance ability have not yet been systematically analyzed in full-water immersion, which is a research gap addressed within this approach to contribute to a better understanding of nitrogen narcosis. In this study, 20 young, healthy, and certified recreational divers participated and performed three different executive-function tests: the Stroop test (Inhibition), the Number/Letter test (Task switching), the 2-back test (Updating/Working memory), and a simple reaction time test (Psychomotor performance). These tests were performed once on land, at 5-meter (m) water depth, and at 20-meter (m) water depth of an indoor diving facility in standardized test conditions (26°C in all water depths). A water-proofed and fully operational tablet computer was used to present visual stimuli and to register reaction times. Performance of the simple reaction time test was not different between underwater and land testing, suggesting that reaction times were not biased by the utilization of the tablet in water immersion. Executive functions were not affected by the shallow water immersion of 5-m water depth. However, performance scores in 20-m water depth revealed a decreased performance in the incongruent test condition (i.e., an index of inhibitory control ability) of the Stroop test, while all other tests were unaffected. Even though only one out of the three tested cognitive domains was affected, the impairment of inhibitory control ability even in relatively shallow water of 20-m is a critical component that should be considered for diver’s safety, since inhibition is required in self-control requiring situations where impulsive and automatic behavior must be inhibited. Our interpretation of these selective impairments is based on a discussion suggesting that different neural networks within the central nervous system, which process specific executive functions, are affected differently by nitrogen narcosis.
机译:在娱乐或职业活动中在水下移动和行动需要完整的执行功能,因为它们具有较高的认知功能,例如成功的自我调节,应对新情况和决策;由于水下分压的升高,所有这些都可能受到氮麻醉的影响。但是,尚未在全水浸中系统分析可能提供对人类认知能力的不同看法的特定执行功能,这是该方法中要解决的研究空白,以有助于更好地了解氮麻醉。在这项研究中,有20位年轻,健康且经过认证的休闲潜水员参加并执行了三种不同的执行功能测试:Stroop测试(抑制),Number / Letter测试(任务切换),2-back测试(更新/工作记忆) ),以及简单的反应时间测试(心理运动表现)。这些测试在室内潜水设施的水深5米(m)和水深20米(m)的地面上以标准测试条件(所有水深均为26°C)进行一次。使用防水且可完全操作的平板电脑呈现视觉刺激并记录反应时间。简单反应时间测试的性能在水下测试和陆地测试之间没有差异,这表明反应时间没有因浸入水中使用平板电脑而产生偏差。执行功能不受5 m水深的浅水浸泡的影响。但是,在20米水深处的性能得分表明,在Stroop测试的不一致测试条件(即抑制控制能力的指标)下性能下降,而其他所有测试均不受影响。即使三个受测认知域中只有一个受到影响,即使在相对较浅的20 m水中,抑制控制能力的损害也是潜水员安全所应考虑的关键因素,因为在自我控制要求中需要抑制必须禁止冲动和自动行为的情况。我们对这些选择性损伤的解释基于一个讨论,该讨论表明中枢神经系统中处理特定执行功能的不同神经网络受氮麻醉作用的影响不同。

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