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首页> 外文期刊>Aviation, space, and environmental medicine. >Objective vs. Subjective Evaluation of Cognitive Performance During 0.4-MPa Dives Breathing Air or Nitrox
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Objective vs. Subjective Evaluation of Cognitive Performance During 0.4-MPa Dives Breathing Air or Nitrox

机译:目标对认知性能的主观评价在0.4MPa潜水期间呼吸空气或Nitrox

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background: Divers try to limit risks associated with their sport, for instance by breathing enriched air nitrox (EANx) instead of air. This double blinded, randomized trial was designed to see if the use of EANx could effectively improve cognitive performance while diving. methods: Eight volunteers performed two no-decompression dry dives breathing air or EANx for 20 min at 0.4 MPa. Cognitive functions were assessed with a computerized test battery, including MathProc and Ptrail. Measurements were taken before the dive, upon arrival and after 15 min at depth, upon surfacing, and at 30 min postdive. After each dive subjects were asked to identify the gas they had just breathed. results: Identification of the breathing gas was not possible on subjective assessment alone, while cognitive assessmentsshowed significantly better performance while breathing EANx. Before the dives, breathing air, mean time to complete the task was 1795 ms for MathProc and 1905 ms for Ptrail. When arriving at depth MathProc took 1616 ms on air and 1523 ms on EANx, and Ptrail took 1318 ms on air and and 1356 ms on EANx, followed 15 min later by significant performance inhibition while breathing air during the ascent and the postdive phase, supporting the concept of late dive/postdive impairment. discussion: The results suggest that EANx could protect against decreased neuro-cognitive performance induced by inert gas narcosis. It was not possible for blinded divers to identify which gas they were breathing and differences in postdive fatigue between air and EANx diving deserve further investigation. ^g>central nervous system, neuropsychology, diving safety, inert gas narcosis, Psychology Experiment Building Language.
机译:背景:潜水员试图限制与其运动相关的风险,例如通过呼吸富含空气Nitrox(EANX)而不是空气。这种双盲的随机试验旨在看看EANX的使用是否可以在潜水时有效提高认知性能。方法:8名志愿者在0.4MPa下进行了呼吸空气或eanx的两个无减压干潜水。使用计算机化测试电池(包括MathProc和Ptrail)评估认知功能。在潜水前进行测量,到达后和15分钟后,在浮出水面时,在30分钟后。在要求每个潜水受试者识别他们刚呼吸的气体后。结果:单独的主观评估不可能识别呼吸气体,而认知评估在呼吸EANX时显着更好的性能。在潜水之前,呼吸空气,平均完成任务的时间为MathProc和1905毫秒的Ptrail。当深度到达MathProc时,在AIR上拍摄了1616毫秒,并且在EANX上的1523毫秒,在AIR中占据了1318毫秒,并且在呼吸期间呼吸空气和后期呼吸期间,在呼吸空气时持续1356毫秒。潜水/后期损伤的概念。讨论:结果表明,EANX可以防止惰性气体麻醉剂引起的神经认知性能降低。盲潜潜水员不可能确定他们在哪种气体呼吸和空气和EANX潜水之间的后期疲劳的差异值得进一步调查。 ^ g>中枢神经系统,神经心理学,潜水安全,惰性气体点燃,心理学实验性建设语言。

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