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Temporal attending and prediction influence the perception of metrical rhythm: evidence from reaction times and ERPs

机译:时间参与和预测会影响音律的感知:反应时间和ERP的证据

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The processing of rhythmic events in music is influenced by the induced metrical structure. Two mechanisms underlying this may be temporal attending and temporal prediction. Temporal fluctuations in attentional resources may influence the processing of rhythmic events by heightening sensitivity at metrically strong positions. Temporal predictions may attenuate responses to events that are highly expected within a metrical structure. In the current study we aimed to disentangle these two mechanisms by examining responses to unexpected sounds, using intensity increments and decrements as deviants. Temporal attending was hypothesized to lead to better detection of deviants in metrically strong (on the beat) than weak (offbeat) positions due to heightened sensitivity on the beat. Temporal prediction was hypothesized to lead to best detection of increments in offbeat positions and decrements on the beat, as they would be most unexpected in these positions. We used a speeded detection task to measure detectability of the deviants under attended conditions (Experiment 1). Under unattended conditions (Experiment 2), we used EEG to measure the mismatch negativity (MMN), an ERP component known to index the detectability of unexpected auditory events. Furthermore, we examined the amplitude of the auditory evoked P1 and N1 responses, which are known to be sensitive to both attention and prediction. We found better detection of small increments in offbeat positions than on the beat, consistent with the influence of temporal prediction (Experiment 1). In addition, we found faster detection of large increments on the beat as opposed to offbeat (Experiment 1), and larger amplitude P1 responses on the beat as compared to offbeat, both in support of temporal attending (Experiment 2). As such, we showed that both temporal attending and temporal prediction shape our processing of metrical rhythm.
机译:音乐中有节奏的事件的处理受诱导的度量结构的影响。以此为基础的两种机制可能是时间参与和时间预测。注意资源中的时间波动可能会通过增强在非常强的位置上的敏感度来影响节奏事件的处理。时间预测可能会减弱对在度量结构内高度预期的事件的响应。在当前的研究中,我们旨在通过使用强度增量和减量作为偏差来检查对意外声音的响应,从而弄清这两种机制。据推测,由于节拍的敏感度提高,所以在时间上的参加比在弱的(非节拍)位置上能够更好地检测到在强音(节拍)上的偏差。假设进行时间预测可以最好地检测非节拍位置上的增量和节拍上的减量,因为它们在这些位置上最出乎意料。我们使用了一个快速的检测任务来测量在有人照看的情况下对异常的可检测性(实验1)。在无人看管的条件下(实验2),我们使用EEG来测量失配负性(MMN),这是一种ERP组件,已知可索引意外听觉事件的可检测性。此外,我们检查了听觉诱发的P1和N​​1反应的幅度,已知它们对注意力和预测都敏感。我们发现,在节拍位置上比在节拍上更好地检测到较小的增量,这与时间预测的影响一致(实验1)。此外,我们发现较节拍更快地检测到节拍上较大的增量(实验1),与节拍相比,在节拍上具有更大的幅度P1响应,均支持临时出席(实验2)。因此,我们表明时间参与和时间预测都影响着我们对节奏节奏的处理。

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