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中文核心期刊

校园声景对儿童认知情感功能的增益机制: 基于多模态生理指标的实验研究

The role of campus soundscape in children’s cognitive-affective functions: evidence from multimodal physiological measures

  • 摘要: 小学校园公共空间对学龄儿童的认知探索与情绪养成具有重要作用, 声学设计的缺失可能削弱环境感知并引发负面情绪。本研究旨在揭示小学公共空间的声景促进儿童认知情感功能的内在机制。基于人因工程学的实验方法, 研究构建了包含7类声景及3类空间调控变量的视听虚拟场景, 通过101位儿童被试的眼动追踪和皮电心率数据分析了空间中的声景变化对儿童环境感知、认知负荷和情绪调节的影响。研究结果表明具有生物生态属性的声景能显著激发了儿童对校园绿色自然环境的觉知能力, 其中鸟鸣声相对树叶、虫鸣声更能创造低唤醒的认知恢复状态。儿童嬉笑、击球等校园生活声对激发非定向注意力和快乐情绪有显著增益, 教学科普相关的信息信号声则可能提升认知负荷和心理压力。公路交通噪声显著抑制了视觉探索频率和迷走神经活跃度, 增加心理疲劳隐患。此外, 声景的认知心理效应因空间类型而变化并受个人能力驱动, 在半开放架空空间中虫鸣声比鸟鸣声更能激发自然觉察, 嬉笑声对注意力与情绪恢复的增益比自然声更显著。最终, 基于多模态生理证据, 研究提出了面向专注学习与压力恢复的差异化校园声景设计策略。

     

    Abstract: The public spaces in primary school campuses play a crucial role in the cognitive exploration and emotional development of school-aged children. However, the lack of acoustic design may weaken environmental perception and trigger negative emotions. This study aims to explore the mechanism by which the soundscape in primary school public spaces promotes children’s cognitive and emotional functions. Based on human factors engineering methodologies, an experiment is conducted using audiovisual virtual scenes comprising seven types of soundscapes and three types of spatial control variables. Eye-tracking and electrodermal and heart rate data from 101 child participants are analyzed to examine the effects of soundscape variations on children’s environmental perception, cognitive load, and emotional regulation. The result points out that soundscapes with bio-ecological attributes can significantly stimulate children's awareness of the green natural environment in the campus, among which bird songs are more effective in creating a low-arousal cognitive recovery state compared to leaf rustling and insect chirping sounds. Campus life sounds such as children’s laughter and ball hitting significantly enhance non-directional attention and happy emotions, while informational signals related to teaching and popular science may increase cognitive load and psychological pressure. Road traffic noise is shown to significantly suppress visual exploration frequency and vagus nerve activity, thereby increasing the risk of mental fatigue. Furthermore, the cognitive psychological effects of soundscapes vary depending on the type of space and are driven by individual abilities. In semi-open elevated spaces, insect sounds are more effective in stimulating natural awareness than bird songs, and laughter has a more significant benefit on attention and emotional recovery than natural sounds. Finally, based on multimodal physiological evidence, the study proposes a differentiated campus soundscape design strategy aimed at focused learning and stress recovery.

     

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