与任务无关的装饰图片会增加文本处理过程中的认知负荷,但对学习或工作记忆能力没有影响:一项脑电图和眼动跟踪研究

Christian Scharinger
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摘要

装饰性图片(DP)经常被用于多媒体任务材料中,通常被认为是所谓的诱惑性细节,因为它们通常与任务无关。通常情况下,装饰图片对行为表现测量的影响不一。目前的研究主要关注 DP 对文本阅读和工作记忆任务中认知负荷的影响。脑电图(EEG)的θ和α频段功率以及瞳孔放大可作为认知负荷的替代指标。定点次数、平均定点持续时间和转换次数则是注意力集中程度的代用指标。在文本阅读和n-back工作记忆这两项任务中,DP的存在和一致性在四个任务条件中进行了操纵。DP既不影响行为表现,也不影响情绪动机因素的主观评价。然而,在这两项任务中,DP 增加了认知负荷,这一点可以从脑电图阿尔法频带功率和(至少在一定程度上)主观努力评分中看出。值得注意的是,脑电图阿尔法频带功率是相当可靠和敏感的认知负荷替代指标。通过分析刺激锁定和固定相关的脑电图数据,脑电图α频带功率揭示了整体和局部认知负荷的差异。总之,本研究强调了脑电图在多媒体研究中的可行性和用途,尤其是在与眼动跟踪相结合时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Task-irrelevant decorative pictures increase cognitive load during text processing but have no effects on learning or working memory performance: an EEG and eye-tracking study

Task-irrelevant decorative pictures increase cognitive load during text processing but have no effects on learning or working memory performance: an EEG and eye-tracking study

Decorative pictures (DP) are often used in multimedia task materials and are commonly considered so-called seductive details as they are commonly not task-relevant. Typically, DP result in mixed effects on behavioral performance measures. The current study focused on the effects of DP on the cognitive load during text reading and working memory task performance. The theta and alpha frequency band power of the electroencephalogram (EEG) and pupil dilation served as proxies of cognitive load. The number of fixations, mean fixation durations, and the number of transitions served as proxies of the attentional focus. For both, text reading and n-back working memory tasks, the presence and congruency of DP were manipulated in four task conditions. DP did neither affect behavioral performance nor subjective ratings of emotional–motivational factors. However, in both tasks, DP increased the cognitive load as revealed by the EEG alpha frequency band power and (at least to some extent) by subjective effort ratings. Notably, the EEG alpha frequency band power was a quite reliable and sensitive proxy of cognitive load. Analyzing the EEG data stimulus-locked and fixation-related, the EEG alpha frequency band power revealed a difference in global and local cognitive load. In sum, the current study underlines the feasibility and use of EEG for multimedia research, especially when combined with eye-tracking.

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