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Differential effects of temporal regularity on auditory-evoked response amplitude: a decrease in silence and increase in noise

机译:时间规律性对听觉诱发反应幅度的不同影响:沉默的减少和噪音的增加

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Background In daily life, we are continuously exposed to temporally regular and irregular sounds. Previous studies have demonstrated that the temporal regularity of sound sequences influences neural activity. However, it remains unresolved how temporal regularity affects neural activity in noisy environments, when attention of the listener is not focused on the sound input. Methods In the present study, using magnetoencephalography we investigated the effects of temporal regularity in sound signal sequencing (regular vs. irregular) in silent versus noisy environments during distracted listening. Results The results demonstrated that temporal regularity differentially affected the auditory-evoked N1m response depending on the background acoustic environment: the N1m amplitudes elicited by the temporally regular sounds were smaller in silence and larger in noise than those elicited by the temporally irregular sounds. Conclusions Our results indicate that the human auditory system is able to involuntarily utilize temporal regularity in sound signals to modulate the neural activity in the auditory cortex in accordance with the surrounding acoustic environment.
机译:背景技术在日常生活中,我们不断暴露于时间上规则和不规则的声音。先前的研究表明,声音序列的时间规律性会影响神经活动。然而,当听众的注意力不集中在声音输入上时,时间规律性如何在嘈杂的环境中影响神经活动仍未解决。方法在本研究中,我们使用脑磁图技术研究了听觉分散时,在安静与嘈杂的环境中,时间规律对声音信号排序(常规与不规则)的影响。结果结果表明,时间规律性对听觉诱发的N1m响应的影响取决于背景声学环境:与时间不规则声音引起的相比,由时间规律性声音引起的N1m振幅在静默中较小,在噪声中较大。结论我们的研究结果表明,人类听觉系统能够根据周围的声学环境非自愿地利用声音信号中的时间规律性来调节听觉皮层的神经活动。

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