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Nonlinear acoustic complexity in a fish ‘two-voice’ system

机译:鱼两声系统中的非线性声学复杂性

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摘要

Acoustic signals play essential roles in social communication and show a strong selection for novel morphologies leading to increased call complexity in many taxa. Among vertebrates, repeated innovations in the larynges of frogs and mammals and the syrinx of songbirds have enhanced the spectro-temporal content, and hence the diversity of vocalizations. This acoustic diversification includes nonlinear characteristics that expand frequency profiles beyond the traditional categorization of harmonic and broadband calls. Fishes have remained a notable exception to evidence for such acoustic innovations among vertebrates, despite their being the largest group of living vertebrates that also exhibit widespread evolution of sound production. Here, we combine rigorous acoustic and mathematical analyses with experimental silencing of the vocal motor system to show how a novel swim bladder mechanism in a toadfish enables it to generate calls exhibiting nonlinearities like those found among frogs, birds and mammals, including primates. By showing that fishes have evolved nonlinear acoustic signalling like all other major lineages of vocal vertebrates, these results suggest strong selection pressure favouring this mechanism to enrich the spectro-temporal content and complexity of vocal signals.
机译:声音信号在社交交流中起着至关重要的作用,并显示出对新型形态的强大选择,从而导致许多分类单元中通话复杂性的增加。在脊椎动物中,青蛙和哺乳动物的喉咙和鸣禽的syrinx方面的反复创新提高了光谱的时空含量,从而增强了发声的多样性。这种声音多样化包括非线性特性,可将频率分布扩展到谐波和宽带呼叫的传统分类之外。尽管鱼类是最大的活脊椎动物群体,并且也表现出声音产生的广泛演变,但它们仍是脊椎动物中这种声学创新证据的一个明显例外。在这里,我们将严格的声学和数学分析与人声运动系统的实验沉默相结合,以显示蟾蜍中新颖的游泳膀胱机制如何使其能够产生表现出非线性的声音,例如在青蛙,鸟类和哺乳动物(包括灵长类动物)中发现的声音。通过显示鱼类已经像声带脊椎动物的所有其他主要谱系一样进化了非线性声信号,这些结果表明强大的选择压力有利于这种机制来丰富声带的频谱时域内容和复杂性。

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