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Effects of night work, sleep loss and time on task on simulated threat detection performance.

机译:夜间工作,睡眠不足和时间对任务的影响对模拟威胁检测性能的影响。

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STUDY OBJECTIVES: To investigate the effects of night work and sleep loss on a simulated luggage screening task (SLST) that mimicked the x-ray system used by airport luggage screeners. DESIGN: We developed more than 5,800 unique simulated x-ray images of luggage organized into 31 stimulus sets of 200 bags each. 25% of each set contained either a gun or a knife with low or high target difficulty. The 200-bag stimuli sets were then run on software that simulates an x-ray screening system (SLST). Signal detection analysis was used to obtain measures of hit rate (HR), false alarm rate (FAR), threat detection accuracy (A'), and response bias (B"(D)). SETTING: Experimental laboratory study PARTICIPANTS: 24 healthy nonprofessional volunteers (13 women, mean age +/- SD = 29.9 +/- 6.5 years). INTERVENTIONS: Subjects performed the SLST every 2 h during a 5-day period that included a 35 h period of wakefulness that extended to night work and then another day work period after the night without sleep. RESULTS: Threat detection accuracy A' decreased significantly (P < 0.001) while FAR increased significantly (P < 0.001) during night work, while both A' (P = 0.001) and HR decreased (P = 0.008) during day work following sleep loss. There were prominent time-on-task effects on response bias B"(D) (P= 0.002) and response latency (P = 0.004), but accuracy A' was unaffected. Both HR and FAR increased significantly with increasing study duration (both P < 0.001), while response latency decreased significantly (P <0.001). CONCLUSIONS: This study provides the first systematic evidence that night work and sleep loss adversely affect the accuracy of detecting complex real world objects among high levels of background clutter. If the results can be replicated in professional screeners and real work environments, fatigue in luggage screening personnel may pose a threat for air traffic safety unless countermeasures for fatigue are deployed.
机译:研究目的:研究夜班工作和睡眠不足对模拟行李筛选任务(SLST)的影响,该任务模仿了机场行李筛选器使用的X射线系统。设计:我们开发了5800多个独特的模拟X射线行李图像,这些图像分为31个刺激组,每个200个袋子。每套武器中有25%装有目标难度较低或较高的枪支或刀子。然后在模拟X射线检查系统(SLST)的软件上运行200袋刺激组。信号检测分析用于获得命中率(HR),误报率(FAR),威胁检测准确性(A')和响应偏差(B“(D))的测量。地点:实验实验室研究参与者:24名健康非专业志愿者(13名女性,平均年龄+/- SD = 29.9 +/- 6.5岁)干预:受试者在5天的时间内每2小时进行一次SLST,包括35小时的清醒时间,该时间延长至夜间工作和结果:夜间工作期间威胁检测准确度A'显着降低(P <0.001),而FAR显着提高(P <0.001),而A'(P = 0.001)和HR均降低失眠后的白天工作中(P = 0.008)。任务时限对响应偏差B“(D)(P = 0.002)和响应潜伏期(P = 0.004)有显着影响,但准确性A'不受影响。随着研究时间的延长,HR和FAR均显着增加(均P <0.001),而反应潜伏期则显着降低(P <0.001)。结论:这项研究提供了第一个系统的证据,证明夜班工作和睡眠不足会严重影响背景杂波中检测复杂的现实世界物体的准确性。如果可以在专业的筛查人员和实际工作环境中复制结果,那么除非采取缓解疲劳的措施,否则行李筛查人员的疲劳可能会对空中交通安全构成威胁。

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