van Klaren Carmen, Maij Anneloes, Marsman Laurie, van Drongelen Alwin
Royal Netherlands Aerospace Centre (NLR), Department of Safety and Human Performance, Amsterdam, The Netherlands.
Sleep Adv. 2024 Feb 6;5(1):zpae009. doi: 10.1093/sleepadvances/zpae009. eCollection 2024.
Operator fatigue poses a major concern in safety-critical industries such as aviation, potentially increasing the chances of errors and accidents. To better understand this risk, there is a need for noninvasive objective measures of fatigue. This study aimed to evaluate the performance of cEEGrids, a type of ear-EEG, for fatigue detection by analyzing the alpha and theta power before and after sleep restriction in four sessions on two separate days, employing a within-participants design. Results were compared to traditional, highly validated methods: the Karolinska Sleepiness Scale (KSS) and Psychomotor Vigilance Task (PVT). After sleep restriction and an office workday, 12 participants showed increased alpha band power in multiple electrode channels, but no channels correlated with KSS scores and PVT response speed. These findings indicate that cEEGrids can detect differences in alpha power following mild sleep loss. However, it should be noted that this capability was limited to specific channels, and no difference in theta power was observed. The study shows the potential and limitations of ear-EEG for fatigue detection as a less invasive alternative to cap-EEG. Further design and electrode configuration adjustments are necessary before ear-EEG can be implemented for fatigue detection in the field.
在航空等对安全要求极高的行业中,操作员疲劳是一个重大问题,可能会增加出错和发生事故的几率。为了更好地理解这种风险,需要采用非侵入性的客观方法来测量疲劳程度。本研究旨在通过采用参与者内设计,在两天内分四个阶段分析睡眠限制前后的α波和θ波功率,评估一种耳脑电图(cEEGrids)在疲劳检测方面的性能。研究结果与传统的、经过高度验证的方法进行了比较:卡罗林斯卡嗜睡量表(KSS)和心理运动警觉任务(PVT)。在睡眠限制和一个工作日的办公室工作之后,12名参与者在多个电极通道上显示出α波段功率增加,但没有通道与KSS评分和PVT反应速度相关。这些发现表明,cEEGrids可以检测出轻度睡眠不足后α波功率的差异。然而,需要注意的是,这种能力仅限于特定通道,并且未观察到θ波功率的差异。该研究显示了耳脑电图作为帽式脑电图的一种侵入性较小的替代方法在疲劳检测方面的潜力和局限性。在将耳脑电图应用于现场疲劳检测之前,还需要进一步进行设计和调整电极配置。