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Sustained Attention in Real Classroom Settings: An EEG Study

机译:真实课堂中的持续注意力:一项脑电图研究

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摘要

Sustained attention is a process that enables the maintenance of response persistence and continuous effort over extended periods of time. Performing attention-related tasks in real life involves the need to ignore a variety of distractions and inhibit attention shifts to irrelevant activities. This study investigates electroencephalography (EEG) spectral changes during a sustained attention task within a real classroom environment. Eighteen healthy students were instructed to recognize as fast as possible special visual targets that were displayed during regular university lectures. Sorting their EEG spectra with respect to response times, which indicated the level of visual alertness to randomly introduced visual stimuli, revealed significant changes in the brain oscillation patterns. The results of power-frequency analysis demonstrated a relationship between variations in the EEG spectral dynamics and impaired performance in the sustained attention task. Across subjects and sessions, prolongation of the response time was preceded by an increase in the delta and theta EEG powers over the occipital region, and decrease in the beta power over the occipital and temporal regions. Meanwhile, implementation of the complex attention task paradigm into a real-world classroom setting makes it possible to investigate specific mutual links between brain activities and factors that cause impaired behavioral performance, such as development and manifestation of classroom mental fatigue. The findings of the study set a basis for developing a system capable of estimating the level of visual attention during real classroom activities by monitoring changes in the EEG spectra.
机译:持续关注是一个过程,可以使响应持续存在并在更长的时间内保持持续的努力。在现实生活中执行与注意力相关的任务需要忽略各种干扰,并禁止将注意力转移到无关的活动上。这项研究调查了在真实的教室环境中持续关注任务期间的脑电图(EEG)频谱变化。指导18名健康的学生尽快识别在常规大学讲课中显示的特殊视觉目标。根据响应时间对他们的EEG谱进行排序,这表明对随机引入的视觉刺激的视觉警觉程度,揭示了大脑振荡模式的显着变化。功率-频率分析的结果表明,在持续注意任务中,脑电图频谱动力学的变化与性能受损之间存在关系。在各科目和会话中,响应时间的延长是在枕骨区域上的增量和theta脑电图能力增加,而在枕骨和颞区域上的β功效降低了。同时,将复杂的注意力任务范式实施到现实世界的课堂环境中,可以研究大脑活动与导致行为表现受损的因素(如课堂精神疲劳的发展和表现)之间的特定相互联系。这项研究的发现为开发一个能够通过监测脑电图谱变化来估计实际课堂活动中视觉注意力水平的系统奠定了基础。

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