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首页> 外文期刊>Annals of work exposures and health. >Effects of Hyperbaric Nitrogen Narcosis on Cognitive Performance in Recreational air SCUBA Divers: An Auditory Event-related Brain Potentials Study
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Effects of Hyperbaric Nitrogen Narcosis on Cognitive Performance in Recreational air SCUBA Divers: An Auditory Event-related Brain Potentials Study

机译:高压氮性麻醉对休闲空气水肺潜水员认知性能的影响:听觉事件相关的大脑潜力研究

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Background:The narcotic effect of hyperbaric nitrogen is most pronounced in air-breathing divers because it impairs diver's cognitive and behavioral performance, and limits the depth of dive profiles. We aimed to investigate the cognitive effects of simulated (500 kPa) air environments in recreational SCUBA divers, revealed by auditory event-related potentials (AERPs). Methods: A total of 18 healthy volunteer recreational air SCUBA divers participated in the study. AERPs were recorded in pre-dive, deep-dive, and post-dive sessions. Results: False-positive score variables were found with significantly higher differences and longer reaction times of hits during deep-dive and post-dive than pre-dive sessions. Also, P3 amplitudes were significantly reduced and peak latencies were prolonged during both deep-dive and post-dive compared with pre-dive sessions. Conclusion: We observed that nitrogen narcosis at 500 kPa pressure in the dry hyperbaric chamber has a mild-to-moderate negative effect on the cognitive performance of recreational air SCUBA divers, which threatened the safety of diving. Although relatively decreased, this effect also continued in the post-dive sessions. These negative effects are especially important for divers engaged in open-sea diving. Our results show crucial implications for the kinds of control measures that can help to prevent nitrogen narcosis and diving accidents at depths up to 40 msw.
机译:背景:高压氮的麻醉作用在空气呼吸的潜水员中最为明显,因为它会损害潜水员的认知和行为表现,并限制了潜水特征的深度。我们的目的是研究与听觉事件相关的电位(AERP)揭示的娱乐性水肺潜水员(AERPS)模拟(500 kPa)空气环境的认知作用。方法:共有18名健康志愿者休闲水肺潜水员参加了这项研究。在潜水前,深度和潜水后会议中记录了AERP。结果:在深度潜水和潜水后的差异差异明显更高的差异和更长的反应时间比潜水前会议中,发现假阳性得分变量明显更高。同样,与潜水前的会议相比,在深度潜水和潜水后,P3幅度显着降低,峰值潜伏期延长。结论:我们观察到,在干高压室中500 kPa压力下的氮毒害对休闲空气水肺潜水员的认知性能有轻度至中度的负面影响,这威胁了潜水的安全。尽管相对下降,但这种效果也在潜水后会议中持续下去。这些负面影响对于从事开放式潜水的潜水员尤其重要。我们的结果表明,对控制措施的类型至关重要,这些措施有助于防止氮麻醉和潜水事故的深度高达40 MSW。

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