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首页> 外文期刊>Frontiers in Psychology >Unpredicted Pitch Modulates Beta Oscillatory Power during Rhythmic Entrainment to a Tone Sequence
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Unpredicted Pitch Modulates Beta Oscillatory Power during Rhythmic Entrainment to a Tone Sequence

机译:不可预测的音调在有节奏地带动音调序列期间调节β振荡能力。

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Extracting temporal regularities in external stimuli in order to predict upcoming events is an essential aspect of perception. Fluctuations in induced power of beta band (15–25 Hz) oscillations in auditory cortex are involved in predictive timing during rhythmic entrainment, but whether such fluctuations are affected by prediction in the spectral (frequency/pitch) domain remains unclear. We tested whether unpredicted (i.e., unexpected) pitches in a rhythmic tone sequence modulate beta band activity by recording EEG while participants passively listened to isochronous auditory oddball sequences with occasional unpredicted deviant pitches at two different presentation rates. The results showed that the power in low-beta (15–20 Hz) was larger around 200–300 ms following deviant tones compared to standard tones, and this effect was larger when the deviant tones were less predicted. Our results suggest that the induced beta power activities in auditory cortex are consistent with a role in sensory prediction of both “when” (timing) upcoming sounds will occur as well as the prediction precision error of “what” (spectral content in this case). We suggest, further, that both timing and content predictions may co-modulate beta oscillations via attention. These findings extend earlier work on neural oscillations by investigating the functional significance of beta oscillations for sensory prediction. The findings help elucidate the functional significance of beta oscillations in perception.
机译:提取外部刺激中的时间规律以预测即将发生的事件是感知的重要方面。在有节奏的夹带过程中,听觉皮层中β波段(15–25 Hz)振荡的感应功率波动与预测时间有关,但尚不清楚此类波动是否受频谱(频率/音高)域预测的影响。我们通过记录脑电图来测试有节奏的音调序列中不可预测的(即意想不到的)音高是否调节β频段的活动,而参与者则以两种不同的呈现速率被动地听取了同步听觉奇怪的球序列,偶尔会有不可预测的异常音高。结果表明,与标准音相比,异常音后低贝塔(15–20 Hz)的功率大约在200–300 ms内,当较少预测异常音时,此效果更大。我们的结果表明,听觉皮层中诱导的β功率活动与“何时”(定时)即将出现的声音以及“什么”(在这种情况下为频谱内容)的预测精度误差的感官预测中的作用一致。 。我们进一步建议,时间和内容预测都可能会通过注意力共同调制β振荡。这些发现通过研究β振荡对感觉预测的功能意义,扩展了神经振荡的早期工作。这些发现有助于阐明β振荡在感知中的功能意义。

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