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Songbirds use pulse tone register in two voices to generate low-frequency sound

机译:鸣鸟在两种声音中使用脉冲音调寄存器来产生低频声音

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摘要

The principal physical mechanism of sound generation is similar in songbirds and humans, despite large differences in their vocal organs. Whereas vocal fold dynamics in the human larynx are well characterized, the vibratory behaviour of the sound-generating labia in the songbird vocal organ, the syrinx, is unknown. We present the first high-speed video records of the intact syrinx during induced phonation. The syrinx of anaesthetized crows shows a vibration pattern of the labia similar to that of the human vocal fry register. Acoustic pulses result from short opening of the labia, and pulse generation alternates between the left and right sound sources. Spontaneously calling crows can also generate similar pulse characteristics with only one sound generator. Airflow recordings in zebra finches and starlings show that pulse tone sounds can be generated unilaterally, synchronously or by alternating between the two sides. Vocal fry-like dynamics therefore represent a common production mechanism for low-frequency sounds in songbirds. These results also illustrate that complex vibration patterns can emerge from the mechanical properties of the coupled sound generators in the syrinx. The use of vocal fry-like dynamics in the songbird syrinx extends the similarity to this unusual vocal register with mammalian sound production mechanisms.
机译:尽管鸣鸟和人类的声器官有很大差异,但声音产生的主要物理机制与之相似。尽管人类喉部的声带动力学具有良好的特征,但是在鸣禽声器官(syrinx)中发声阴唇的振动行为是未知的。我们介绍了完整的syrinx在感应发声期间的第一个高速视频记录。麻醉过的乌鸦的syrinx表现出阴唇的振动模式,类似于人声鱼苗套的振动模式。声音脉冲是由阴唇的短开产生的,并且脉冲的产生在左右声源之间交替。自发鸣叫的乌鸦也可以只用一个声音发生器产生类似的脉冲特性。斑马雀和star鸟中的气流记录表明,可以单边,同步或通过在两侧之间交替产生脉冲音。因此,类似人声炸弹的动态声代表了鸣禽中低频声音的常见产生机制。这些结果还表明,复杂的振动模式可能会从syrinx中耦合的声音发生器的机械性能中产生。在鸣禽syrinx中使用类似声音发声的动态特性,扩展了这种与哺乳动物声音产生机制的异常声音记录的相似性。

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