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High Working Memory Load Impairs Language Processing during a Simulated Piloting Task: An ERP and Pupillometry Study

机译:高工作记忆负载会削弱模拟试点任务期间的语言处理:ERP和P法研究

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摘要

Given the important amount of visual and auditory linguistic information that pilots have to process, operating an aircraft generates a high working-memory load (WML). In this context, the ability to focus attention on relevant information and to remain responsive to concurrent stimuli might be altered. Consequently, understanding the effects of WML on the processing of both linguistic targets and distractors is of particular interest in the study of pilot performance. In the present work, participants performed a simplified piloting task in which they had to follow one of three colored aircraft, according to specific written instructions (i.e., the written word for the color corresponding to the color of one of the aircraft) and to ignore either congruent or incongruent concurrent auditory distractors (i.e., a spoken name of color). The WML was manipulated with an n-back sub-task. Participants were instructed to apply the current written instruction in the low WML condition, and the 2-back written instruction in the high WML condition. Electrophysiological results revealed a major effect of WML at behavioral (i.e., decline of piloting performance), electrophysiological, and autonomic levels (i.e., greater pupil diameter). Increased WML consumed resources that could not be allocated to the processing of the linguistic stimuli, as indexed by lower P300/P600 amplitudes. Also, significantly, lower P600 responses were measured in incongruent vs. congruent trials in the low WML condition, showing a higher difficulty reorienting attention toward the written instruction, but this effect was canceled in the high WML condition. This suppression of interference in the high load condition is in line with the engagement/distraction trade-off model. We propose that P300/P600 components could be reliable indicators of WML and that they allow an estimation of its impact on the processing of linguistic stimuli.
机译:考虑到飞行员必须处理的大量视觉和听觉语言信息,操作飞机会产生很高的工作记忆负荷(WML)。在这种情况下,将注意力集中在相关信息上并保持对并发刺激做出响应的能力可能会发生变化。因此,了解WML对语言目标和干扰因素处理的影响在飞行员性能研究中尤为重要。在当前的工作中,参与者执行了简化的驾驶任务,其中他们必须按照特定的书面说明(即,对应于其中一架飞机的颜色的颜色的文字)跟随三架彩色飞机中的一架,并忽略一致或不一致的并发听觉干扰物(即颜色的口头名称)。 WML是通过n-back子任务来操纵的。参与者被指示在低WML条件下应用当前的书面指令,在高WML条件下应用2-back书面指令。电生理结果显示,WML在行为(即驾驶性能下降),电生理和自主水平(即更大的瞳孔直径)方面具有重要作用。 WML消耗的资源增加,无法分配给语言刺激的处理,由较低的P300 / P600振幅指示。同样,在低WML条件下,在不一致和全等试验中测得较低的P600反应,显示出将注意力重新转向书面说明的难度较高,但是在高WML条件下,这种效果被抵消。在高负载条件下的这种干扰抑制与接合/分散权衡模型一致。我们建议P300 / P600组件可以作为WML的可靠指标,并且它们可以估计其对语言刺激处理的影响。

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