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从一种新颖的快节奏敲击范式中可靠地估计内部振荡器特性。

Reliable estimation of internal oscillator properties from a novel, fast-paced tapping paradigm.

作者信息

Kaya Ece, Henry Molly J

机构信息

Max Planck Institute for Empirical Aesthetics, Frankfurt, Germany.

Toronto Metropolitan University, Toronto, Canada.

出版信息

Sci Rep. 2022 Nov 28;12(1):20466. doi: 10.1038/s41598-022-24453-6.

Abstract

Rhythmic structure in speech, music, and other auditory signals helps us track, anticipate, and understand the sounds in our environment. The dynamic attending framework proposes that biological systems possess internal rhythms, generated via oscillatory mechanisms, that synchronize with (entrain to) rhythms in the external world. Here, we focused on two properties of internal oscillators: preferred rate, the default rate of an oscillator in the absence of any input, and flexibility, the oscillator's ability to adapt to changes in external rhythmic context. We aimed to develop methods that can reliably estimate preferred rate and flexibility on an individual basis. The experiment was a synchronization-continuation finger tapping paradigm with a unique design: the stimulus rates were finely sampled over a wide range of rates and were presented only once. Individuals tapped their finger to 5-event isochronous stimulus sequences and continued the rhythm at the same pace. Preferred rate was estimated by assessing the best-performance conditions where the difference between the stimulus rate and continuation tapping rate (tempo-matching error) was minimum. The results revealed harmonically related, multiple preferred rates for each individual. We maximized the differences in stimulus rate between consecutive trials to challenge individuals' flexibility, which was then estimated by how much tempo-matching errors in synchronization tapping increase with this manipulation. Both measures showed test-retest reliability. The findings demonstrate the influence of properties of the auditory context on rhythmic entrainment, and have implications for development of methods that can improve attentional synchronization and hearing.

摘要

语音、音乐及其他听觉信号中的节奏结构有助于我们追踪、预测并理解周围环境中的声音。动态注意框架提出,生物系统拥有通过振荡机制产生的内部节奏,这些节奏会与外部世界的节奏同步(与之同步)。在此,我们聚焦于内部振荡器的两个特性:偏好频率,即振荡器在没有任何输入时的默认频率;以及灵活性,即振荡器适应外部节奏环境变化的能力。我们旨在开发能够在个体层面可靠地估计偏好频率和灵活性的方法。该实验是一种具有独特设计的同步 - 延续手指敲击范式:刺激频率在很宽的频率范围内进行精细采样,且仅呈现一次。个体随着由5个事件组成的等时刺激序列敲击手指,并以相同节奏延续该节奏。通过评估刺激频率与延续敲击频率之间的差异(节奏匹配误差)最小的最佳表现条件来估计偏好频率。结果显示,每个个体都存在谐波相关的多个偏好频率。我们使连续试验之间的刺激频率差异最大化,以挑战个体的灵活性,然后通过同步敲击时节奏匹配误差随这种操作增加的程度来估计灵活性。这两种测量方法均显示出重测信度。这些发现证明了听觉环境特性对节奏同步的影响,并对能够改善注意力同步和听力的方法的开发具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f045/9705557/a7ed3da8f89d/41598_2022_24453_Fig1_HTML.jpg

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