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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Role of syringeal vibrations in bird vocalizations
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Role of syringeal vibrations in bird vocalizations

机译:注射器振动在鸟的发声中的作用

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The sound-generating mechanism in the bird syrinx has been the subject of debate. Recent endoscopic imaging of the syrinx during phonation provided evidence for vibrations of membranes and labia, but could not provide quantitative analysis of the vibrations. We have now recorded vibrations in the intact syrinx directly with an optic vibration detector together with the emitted sound during brain stimulation-induced phonation in anaesthetized pigeons, cockatiels, and a hill myna. The phonating syrinx was also filmed through an endoscope inserted into the trachea. In these species vibrations were always present during phonation, and their frequency and amplitude characteristics were highly similar to those of the emitted sound, including nonlinear acoustic phenomena. This was also true for tonal vocalizations, suggesting that a vibratory mechanism can account for all vocalizations presented in the study. In some vocalizations we found differences in the shape of the waveform between vibrations and the emitted sound, probably reflecting variations in oscillatory behaviour of syringeal structures. This study therefore provides the first direct evidence for a vibratory sound-generating mechanism (i.e. lateral tympaniform membranes or labia acting as pneumatic valves) and does not support pure aerodynamic models. Furthermore, the data emphasize a potentially high degree of acoustic complexity.
机译:鸟类的syrinx产生声音的机制一直是争论的话题。最近在发声期间内窥镜对syrinx的成像为膜和阴唇的振动提供了证据,但无法对振动进行定量分析。现在,我们已经使用光学振动检测器直接记录了完整的syrinx中的振动,以及在麻醉的鸽子,小形鹦鹉和山地八哥中大脑刺激诱发的发声过程中发出的声音。还通过插入气管的内窥镜对发声的syrinx进行了拍摄。在这些物种中,发声期间总是存在振动,并且它们的频率和幅度特性与发出的声音(包括非线性声学现象)高度相似。对于音调发声也是如此,这表明振动机制可以解释研究中提出的所有发声。在某些发声中,我们发现振动和发出的声音之间的波形形状有所不同,可能反映了注射器结构的振荡行为的变化。因此,这项研究为振动声音产生机制(即外侧鼓膜或阴唇充当气动阀)提供了第一个直接证据,并且不支持纯粹的空气动力学模型。此外,数据强调了潜在的高度声学复杂性。

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