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听觉分心的脑电图特征:对现实世界声景中频谱新奇性的神经反应

EEG Signatures of Auditory Distraction: Neural Responses to Spectral Novelty in Real-World Soundscapes.

作者信息

Korte Silvia, Haupt Thorge, Bleichner Martin G

机构信息

Neurophysiology of Everyday Life Group, Department of Psychology, University of Oldenburg, Oldenburg 26129, Germany

Neurophysiology of Everyday Life Group, Department of Psychology, University of Oldenburg, Oldenburg 26129, Germany.

出版信息

eNeuro. 2025 Jul 23;12(7). doi: 10.1523/ENEURO.0154-25.2025. Print 2025 Jul.

Abstract

In everyday life, ambient sounds can disrupt our concentration, interfere with task performance, and contribute to mental fatigue. Even when not actively attended to, salient or changing sounds in the environment can involuntarily divert attention. Understanding how the brain responds to these real-world auditory distractions is essential for evaluating the cognitive consequences of environmental noise. In this study, we recorded electroencephalography while participants performed different tasks during prolonged exposure to a complex urban soundscape. We identified naturally occurring, acoustically salient events and analyzed the corresponding event-related potentials (ERPs). Auditory spectral novelty reliably elicited a P3a response (250-350 ms), reflecting robust attentional capture by novel environmental sounds. In contrast, the reorienting negativity (RON) window (450-600 ms) showed no consistent modulation, possibly due to the continuous and largely behaviorally irrelevant nature of the soundscape. Performance in a behavioral task was briefly disrupted following novel sounds, underscoring the functional impact of attentional capture. Noise sensitivity, measured via the Weinstein Noise Sensitivity Scale ( 1978), was not associated with ERP amplitudes. Together, these findings demonstrate that the P3a component provides a stable neural marker of attentional shifts in naturalistic contexts and highlight the utility of spectral novelty detection as a tool for investigating auditory attention outside the laboratory.

摘要

在日常生活中,环境声音会干扰我们的注意力,影响任务表现,并导致精神疲劳。即使在没有主动关注的情况下,环境中突出或变化的声音也会不由自主地分散注意力。了解大脑如何应对这些现实世界中的听觉干扰对于评估环境噪声的认知后果至关重要。在这项研究中,我们在参与者长时间暴露于复杂的城市声景中执行不同任务时记录了脑电图。我们识别出自然发生的、声学上突出的事件,并分析了相应的事件相关电位(ERP)。听觉频谱新颖性可靠地引发了P3a反应(250 - 350毫秒),反映了新颖环境声音对注意力的强烈吸引。相比之下,重新定向负波(RON)窗口(450 - 600毫秒)没有显示出一致的调制,这可能是由于声景持续且在很大程度上与行为无关的性质。新声音出现后,行为任务的表现会短暂中断,这突出了注意力捕获的功能影响。通过温斯坦噪声敏感度量表(1978年)测量的噪声敏感度与ERP振幅无关。总之,这些发现表明P3a成分提供了自然环境中注意力转移的稳定神经标志物,并强调了频谱新颖性检测作为研究实验室外听觉注意力工具的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/742b/12301874/a3b8cbb8d2a5/eneuro-12-ENEURO.0154-25.2025-g001.jpg

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