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Assessing vocal performance in complex birdsong: a novel approach

机译:评估复杂鸟鸣声中的声音表现:一种新颖的方法

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Background Vocal performance refers to the ability to produce vocal signals close to physical limits. Such motor skills can be used by conspecifics to assess a signaler’s competitive potential. For example it is difficult for birds to produce repeated syllables both rapidly and with a broad frequency bandwidth. Deviation from an upper-bound regression of frequency bandwidth on trill rate has been widely used to assess vocal performance. This approach is, however, only applicable to simple trilled songs, and even then may be affected by differences in syllable complexity. Results Using skylarks ( Alauda arvensis ) as a birdsong model with a very complex song structure, we detected another performance trade-off: minimum gap duration between syllables was longer when the frequency ratio between the end of one syllable and the start of the next syllable (inter-syllable frequency shift) was large. This allowed us to apply a novel measure of vocal performance - vocal gap deviation: the deviation from a lower-bound regression of gap duration on inter-syllable frequency shift. We show that skylarks increase vocal performance in an aggressive context suggesting that this trait might serve as a signal for competitive potential. Conclusions We suggest using vocal gap deviation in future studies to assess vocal performance in songbird species with complex structure.
机译:背景声乐表现是指产生接近物理极限的声音信号的能力。特定人员可以使用这种运动技能来评估信号员的竞争潜力。例如,鸟类很难快速且以较宽的频率带宽产生重复的音节。频率带宽对颤音速率的上限回归的偏差已被广泛用于评估声音表现。但是,此方法仅适用于简单的颤音歌曲,即使如此,它也可能会受到音节复杂度差异的影响。结果使用云雀(Alauda arvensis)作为具有非常复杂的歌曲结构的鸟鸣模型,我们发现了另一个性能折衷:当一个音节的末尾与下一个音节的开始之间的频率比时,音节之间的最小间隔持续时间更长(音节间的频移)很大。这使我们能够应用一种新的声音表现测量方法-声音间隙偏差:音节间频移对间隙持续时间下限回归的偏差。我们表明,云雀在积极的情境下会提高嗓音表现,表明该特征可能是竞争潜力的信号。结论我们建议在未来的研究中使用人声间隙偏差来评估结构复杂的鸣禽物种的声音表现。

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