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Eye-tracking measures and human performance in a vigilance task.

机译:警惕任务中的眼动跟踪措施和人员绩效。

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BACKGROUND: Visual scanning is necessary for aviation safety and similar vigilance tasks, but little is known about its characteristics in such tasks, including possible changes with alertness and fatigue. We explored concurrent eye movements and human performance during a vigilance task designed to require frequent visual scanning. Effects of time and auditory stimuli were examined. METHOD: A corneal-reflectance, PC-based system (Eyegaze Development System, LC Technologies) provided eye movement measures. Stimuli were four digits in a rectangular array, changed at an event rate of 4 s for a task duration of 30 min. There were 20 subjects who were asked to respond to specific, infrequent signal arrays by bar press, under both 50 dBA white noise and 90 dBA intermittent and unpredictable sound-burst conditions, counterbalanced for order. RESULTS: With time-on-task, subjective fatigue ratings increased, dwell time defined as the total duration of fixations on target digits decreased, number of fixations decreased, and fixations were further from target digits in both conditions. Fixation durations [mean (M) = 258 ms; standard deviation (SD) = 54 ms] did not change significantly with time or condition. Off-target visual scan-paths were less frequently followed by hits than were on-target scan-paths in both conditions. With the sound-burst condition, fixations were closer to target digits and hit rates increased. CONCLUSIONS: Dwell time, number, and accuracy of fixations on target objects decreased with time on task, and inaccurate scan-paths were often associated with performance errors. Sound bursts increased fixation accuracy and hit rate. The results provide a basis for visual scan analyses during vigilance tasks, with applications to alertness monitoring and prediction.
机译:背景:视觉扫描对于航空安全和类似的警戒任务是必需的,但对于这种任务的特征知之甚少,包括机敏性和疲劳性可能发生的变化。我们在需要频繁进行视觉扫描的警戒任务中探索了同时发生的眼球运动和人的行为。检查时间和听觉刺激的影响。方法:基于PC的角膜反射系统(Eyegaze开发系统,LC Technologies)提供了眼睛运动的措施。刺激是矩形阵列中的四位数,在30分钟的任务持续时间内以4 s的事件速率发生变化。在50 dBA白噪声和90 dBA间歇性和不可预测的声音突发条件下,有20位受试者被要求通过压条机对特定的,不频繁的信号阵列做出响应,以平衡顺序。结果:随着任务时间的推移,主观疲劳等级增加,停留时间定义为在两种情况下固定在目标手指上的总时间减少,固定次数减少以及固定距离目标手指的距离。固定持续时间[平均值(M)= 258毫秒;标准偏差(SD)= 54毫秒]不会随时间或条件而发生显着变化。在两种情况下,目标外扫描路径的命中率均低于目标外扫描路径。在突发声音的情况下,注视点更接近目标数字,命中率增加。结论:目标对象的固定时间,固定次数和精度会随着任务时间的增加而降低,并且扫描路径不正确通常会导致性能错误。声音爆发可提高固视精度和命中率。结果为警惕任务期间的视觉扫描分析提供了基础,并将其应用于警觉性监视和预测。

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