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Relationship between the Sequencing and Timing of Vocal Motor Elements in Birdsong

机译:鸟鸣中人声运动元件的时序与时序的关系

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摘要

Accurate coordination of the sequencing and timing of motor gestures is important for the performance of complex and evolutionarily relevant behaviors. However, the degree to which motor sequencing and timing are related remains largely unknown. Birdsong is a communicative behavior that consists of discrete vocal motor elements (‘syllables’) that are sequenced and timed in a precise manner. To reveal the relationship between syllable sequencing and timing, we analyzed how variation in the probability of syllable transitions at branch points, nodes in song with variable sequencing across renditions, correlated with variation in the duration of silent gaps between syllable transitions (‘gap durations’) for adult Bengalese finch song. We observed a significant negative relationship between transition probability and gap duration: more prevalent transitions were produced with shorter gap durations. We then assessed the degree to which long-term age-dependent changes and acute context-dependent changes to syllable sequencing and timing followed this inverse relationship. Age- but not context-dependent changes to syllable sequencing and timing were inversely related. On average, gap durations at branch points decreased with age, and the magnitude of this decrease was greater for transitions that increased in prevalence than for transitions that decreased in prevalence. In contrast, there was no systematic relationship between acute context-dependent changes to syllable sequencing and timing. Gap durations at branch points decreased when birds produced female-directed courtship song compared to when they produced undirected song, and the magnitude of this decrease was not related to the direction and magnitude of changes to transition probabilities. These analyses suggest that neural mechanisms that regulate syllable sequencing could similarly control syllable timing but also highlight mechanisms that can independently regulate syllable sequencing and timing.
机译:运动手势的顺序和时序的准确协调对于执行复杂且与进化相关的行为非常重要。然而,运动顺序和正时相关的程度在很大程度上仍然未知。鸟鸣是一种交际行为,由离散的发声运动元素(“音节”)组成,这些元素以精确的方式进行排序和计时。为了揭示音节音序与音调之间的关系,我们分析了音节过渡的概率在分支点,歌曲中的节点之间随着音序变化而变化的变化与音节过渡之间的无声间隙持续时间的变化(``间隙持续时间'')如何相关)用于成年孟加拉雀科的歌曲。我们观察到过渡概率与缺口持续时间之间存在显着的负相关关系:在较短的缺口持续时间内产生了更多的普遍过渡。然后,我们评估了音节排序和时间的长期年龄依赖性变化和急性上下文依赖性变化遵循这种反比关系的程度。音节排序和时间的年龄相关性而非上下文相关性成反比。平均而言,分支点的空位持续时间随着年龄的增长而减少,对于患病率增加的过渡来说,这种减少的幅度要比对患病率降低的过渡更大。相比之下,音节排序和时机的上下文相关急性变化之间没有系统关系。与鸟只产生雌性定向求爱歌相比,鸟只产生雌性定向求爱的歌在分支点的间隙持续时间减少,而且这种减少的幅度与过渡概率变化的方向和幅度无关。这些分析表明,调节音节排序的神经机制可以类似地控制音节的时序,但也突出了可以独立调节音节排序和时序的机制。

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