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Prospective Memory Performance in Simulated Air Traffic Control: Robust to Interruptions but Impaired by Retention Interval

机译:模拟空中流量控制中的潜在内存性能:对中断而且通过保留间隔损害的强大

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Objective To examine the effects of interruptions and retention interval on prospective memory for deferred tasks in simulated air traffic control. Background In many safety-critical environments, operators need to remember to perform a deferred task, which requires prospective memory. Laboratory experiments suggest that extended prospective memory retention intervals, and interruptions in those retention intervals, could impair prospective memory performance. Method Participants managed a simulated air traffic control sector. Participants were sometimes instructed to perform a deferred handoff task, requiring them to deviate from a routine procedure. We manipulated whether an interruption occurred during the prospective memory retention interval or not, the length of the retention interval (37–117 s), and the temporal proximity of the interruption to deferred task encoding and execution. We also measured performance on ongoing tasks. Results Increasing retention intervals (37–117 s) decreased the probability of remembering to perform the deferred task. Costs to ongoing conflict detection accuracy and routine handoff speed were observed when a prospective memory intention had to be maintained. Interruptions did not affect individuals’ speed or accuracy on the deferred task. Conclusion Longer retention intervals increase risk of prospective memory error and of ongoing task performance being impaired by cognitive load; however, prospective memory can be robust to effects of interruptions when the task environment provides cuing and offloading. Application To support operators in performing complex and dynamic tasks, prospective memory demands should be reduced, and the retention interval of deferred tasks should be kept as short as possible.
机译:目的探讨中断与保留间隔对模拟空中交通管制延期任务的前瞻性记忆的影响。背景技术在许多安全关键环境中,运营商需要记住执行需要潜在内存的延迟任务。实验室实验表明,延长了预期记忆保留间隔,以及这些保留间隔中的中断可能损害预期记忆性能。方法参与者管理了模拟空中交通管制部门。有时指示参与者执行延期的切换任务,要求它们偏离例行程序。我们操纵在预期内存保持间隔期间是否发生中断,保持间隔(37-117 s)的长度,以及中断对延迟任务编码和执行的时间接近。我们还测量了正在进行的任务上的表现。结果保留间隔增加(37-117秒)减少了记住延期任务的概率。当必须维持潜在的记忆意愿时,观察到正在进行冲突检测准确度和常规切换速度的成本。中断不会影响延迟任务的个人速度或准确性。结论较长的保留间隔增加了预期记忆误差的风险,并且正在进行的任务性能因认知负载而受到损害;然而,当任务环境提供CUING和卸载时,前瞻性存储器可以稳健地对中断的影响。应用于支持运营商在执行复杂和动态任务时,应减少预期内存需求,并且延迟任务的保留间隔应尽可能短。

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