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Perceptual Temporal Asymmetry Associated with Distinct ON and OFF Responses to Time-Varying Sounds with Rising versus Falling Intensity: A Magnetoencephalography Study

机译:时空变化时声音强度上升与下降的明显开/关响应相关的知觉时间不对称:一项脑磁图研究

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摘要

This magnetoencephalography (MEG) study investigated evoked ON and OFF responses to ramped and damped sounds in normal-hearing human adults. Two pairs of stimuli that differed in spectral complexity were used in a passive listening task; each pair contained identical acoustical properties except for the intensity envelope. Behavioral duration judgment was conducted in separate sessions, which replicated the perceptual bias in favour of the ramped sounds and the effect of spectral complexity on perceived duration asymmetry. MEG results showed similar cortical sites for the ON and OFF responses. There was a dominant ON response with stronger phase-locking factor (PLF) in the alpha (8–14 Hz) and theta (4–8 Hz) bands for the damped sounds. In contrast, the OFF response for sounds with rising intensity was associated with stronger PLF in the gamma band (30–70 Hz). Exploratory correlation analysis showed that the OFF response in the left auditory cortex was a good predictor of the perceived temporal asymmetry for the spectrally simpler pair. The results indicate distinct asymmetry in ON and OFF responses and neural oscillation patterns associated with the dynamic intensity changes, which provides important preliminary data for future studies to examine how the auditory system develops such an asymmetry as a function of age and learning experience and whether the absence of asymmetry or abnormal ON and OFF responses can be taken as a biomarker for certain neurological conditions associated with auditory processing deficits.
机译:这项磁脑图(MEG)研究调查了正常听觉成年人对倾斜和衰减声音的诱发ON和OFF反应。在被动聆听任务中使用了两对频谱复杂度不同的刺激。除强度包络线外,每对都包含相同的声学特性。行为持续时间的判断是在单独的会话中进行的,复制了感知偏见,偏向于倾斜的声音,以及频谱复杂度对感知持续时间不对称的影响。 MEG结果显示了类似的皮质部位的开和关反应。在阻尼声音的α(8–14 Hz)和theta(4–8 Hz)频带中,具有较强的锁相因子(PLF)的主导ON响应。相比之下,强度增强的声音的OFF响应与伽马波段(30–70 Hz)中较强的PLF相关。探索性的相关分析表明,左耳听觉皮层的OFF响应可以很好地预测光谱简单对的时间不对称性。结果表明,ON和OFF响应以及与动态强度变化相关的神经振荡模式存在明显的不对称性,这为将来的研究提供了重要的初步数据,以研究听觉系统如何根据年龄和学习经验来发展这种不对称性以及缺乏不对称性或不正常的ON和OFF反应可以作为与听觉处理缺陷相关的某些神经系统疾病的生物标记。

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