航空业的睡眠惰性

IF 0.9 4区 医学 Q4 BIOPHYSICS
Fabien Sauvet, Vincent Beauchamps, Philippe Cabon
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引用次数: 0

摘要

简介:睡眠惰性是指觉醒后警觉性和认知能力暂时受损的过渡状态。睡眠惰性的程度和时间过程具有很大的个体差异性,受影响的认知功能之间也存在很大差异。飞行员在值班工作时间或飞行中休息时会有睡眠或小憩时间,醒来后很快就需要执行对安全至关重要的任务。本综述分析了与睡眠惰性和适用于航空业的对策相关的文献。方法:大部分关注睡眠惰性的科学文献都是基于对慢性睡眠惰性患者的研究。讨论:睡眠惰性是一个多因素、复杂的过程,许多不同的方案都是在非对照实验室设计、问卷调查或认知测试中进行的,受试者人数较少,且未被复制。有证据表明,失眠后醒来或从更深的睡眠阶段醒来,会通过觉醒和促进睡眠的大脑结构之间复杂的相互作用加剧睡眠惰性。尽管如此,目前还无法进行荟萃分析,因此推断飞行员的表现也是假设性的。必须在现实生活或模拟操作情况下进行研究,才能更好地描述睡眠惰性和动力学对飞行员表现的影响。休息或睡眠时间仍然是飞行员对抗疲劳和相关性能下降的主要方法。我们提出了减轻睡眠惰性和提高警觉性的积极策略。Aerosp Med Hum Perform.2024; 95(4):206-213.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sleep Inertia in Aviation.

INTRODUCTION: Sleep inertia is the transition state during which alertness and cognitive performance are temporarily impaired after awakening. Magnitude and time course of sleep inertia are characterized by high individual variability with large differences between the cognitive functions affected. This period of impairment is of concern to pilots, who take sleep or nap periods during on-call work hours or in-flight rest, then need to perform safety-critical tasks soon after waking. This review analyzes literature related to sleep inertia and countermeasures applicable for aviation.METHODS: The large part of scientific literature that focuses on sleep inertia is based on studies in patients with chronic sleep inertia. We analyzed 8 narrative reviews and 64 papers related to acute sleep inertia in healthy subjects.DISCUSSION: Sleep inertia is a multifactorial, complex process, and many different protocols have been conducted, with a low number of subjects, in noncontrolled laboratory designs, with questionnaires or cognitive tests that have not been replicated. Evidence suggests that waking after sleep loss, or from deeper stages of sleep, can exacerbate sleep inertia through complex interactions between awakening and sleep-promoting brain structures. Nevertheless, no meta-analyses are possible and extrapolation to pilots' performances is hypothetical. Studies in real life or simulated operational situations must be conducted to improve the description of the impact of sleep inertia and kinetics on pilots' performances. Taking rest or sleep time remains the main method for pilots to fight against fatigue and related decreases in performance. We propose proactive strategies to mitigate sleep inertia and improve alertness.Sauvet F, Beauchamps V, Cabon P. Sleep inertia in aviation. Aerosp Med Hum Perform. 2024; 95(4):206-213.

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来源期刊
Aerospace medicine and human performance
Aerospace medicine and human performance PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH -MEDICINE, GENERAL & INTERNAL
CiteScore
1.10
自引率
22.20%
发文量
272
期刊介绍: The peer-reviewed monthly journal, Aerospace Medicine and Human Performance (AMHP), formerly Aviation, Space, and Environmental Medicine, provides contact with physicians, life scientists, bioengineers, and medical specialists working in both basic medical research and in its clinical applications. It is the most used and cited journal in its field. It is distributed to more than 80 nations.
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