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对听觉警报的注意力不集中:个体间差异、电生理特征和单试分类。

Inattentional deafness to auditory alarms: Inter-individual differences, electrophysiological signature and single trial classification.

机构信息

ISAE-SUPAERO, Université de Toulouse, France.

ISAE-SUPAERO, Université de Toulouse, France.

出版信息

Behav Brain Res. 2019 Mar 15;360:51-59. doi: 10.1016/j.bbr.2018.11.045. Epub 2018 Nov 30.

Abstract

Inattentional deafness can have deleterious consequences in complex real-life situations (e.g. healthcare, aviation) leading to miss critical auditory signals. Such failure of auditory attention is thought to rely on top-down biasing mechanisms at the central executive level. A complementary approach to account for this phenomenon is to consider the existence of visual dominance over hearing that could be implemented via direct visual-to-auditory pathways. To investigate this phenomenon, thirteen aircraft pilots, equipped with a 32-channel EEG system, faced a low and high workload scenarii along with an auditory oddball task in a motion flight simulator. Prior to the flying task, the pilots were screened to assess their working memory span and visual dominance susceptibility. The behavioral results disclosed that the volunteers missed 57.7% of the auditory alarms in the difficult condition. Among all evaluated capabilities, only the visual dominance index was predictive of the miss rate in the difficult scenario. These findings provide behavioral evidences that other early cross-modal competitive process than top down modulation process could account for inattentional deafness. The electrophysiological analyses showed that the miss over the hit alarms led to a significant amplitude reduction of early perceptual (N100) and late attentional (P3a and P3b) event-related potentials components. Eventually, we implemented an EEG-based processing pipeline to perform single-trial classification of inattentional deafness. The results indicate that this processing chain could be used in an ecological setting as it led to 72.2% mean accuracy to discriminate missed from hit auditory alarms.

摘要

注意缺陷聋在复杂的现实生活情境(如医疗保健、航空)中可能产生有害后果,导致错过关键的听觉信号。这种听觉注意力的失败被认为依赖于中央执行水平的自上而下的偏向机制。解释这种现象的另一种方法是考虑视觉对听觉的优势的存在,这种优势可以通过直接的视觉到听觉途径来实现。为了研究这种现象,13 名飞机驾驶员配备了 32 通道 EEG 系统,在运动飞行模拟器中面对低和高工作负荷情景以及听觉异常任务。在飞行任务之前,对飞行员进行了筛选,以评估他们的工作记忆广度和视觉优势易感性。行为结果表明,志愿者在困难条件下错过了 57.7%的听觉警报。在所有评估的能力中,只有视觉优势指数可以预测困难情况下的错过率。这些发现提供了行为证据,表明除了自上而下的调制过程之外,其他早期的跨模态竞争过程可以解释注意缺陷聋。电生理分析表明,错过与击中警报导致早期感知(N100)和晚期注意(P3a 和 P3b)事件相关电位成分的振幅显著降低。最终,我们实施了一个基于 EEG 的处理管道,对注意缺陷聋进行单次试验分类。结果表明,该处理链可用于生态环境,因为它可以区分错过和击中的听觉警报,平均准确率为 72.2%。

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