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Vocalization in caterpillars: a novel sound-producing mechanism for insects

机译:毛毛虫的发声:昆虫的一种新颖的昆虫机制

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Insects have evolved a great diversity of sound-producing mechanisms largely attributable to their hardened exoskeleton, which can be rubbed, vibrated or tapped against different substrates to produce acoustic signals. However, sound production by forced air, while common in vertebrates, is poorly understood in insects. We report on a caterpillar that 'vocalizes' by forcing air into and out of its gut. When disturbed, larvae of the Nessus sphinx hawkmoth (Sphingidae: Amphion floridensis) produce sound trains comprising a stereotyped pattern of long (370 ms) followed by multiple short-duration (23 ms) units. Sounds are emitted from the oral cavity, as confirmed by close-up videos and comparing sound amplitudes at different body regions. Numerical models using measurements of the caterpillar foregut were constructed to test hypotheses explaining sound production. We propose that sound is generated by ring vortices created as air flows through the orifice between two foregut chambers (crop and oesophagus), a mechanism analogous to a whistling kettle. As air flows past the orifice, certain sound frequencies are amplified by a Helmholtz resonator effect of the oesophagus chamber. Long sound units occur during inflation, while short sound units occur during deflation. Several other insects have been reported to produce sounds by forced air, but the aeroacoustic mechanisms of such sounds remain elusive. Our results provide evidence for this mechanism by showing that caterpillars employ mechanisms similar to rocket engines to produce sounds.
机译:昆虫已经进化了巨大的分集,主要是归因于其硬化的外骨骼,其可以摩擦,振动或敲击不同的基材以产生声学信号。然而,强制空气的声音产生,而在脊椎动物中常见,在昆虫中仍然很难理解。我们通过迫使空气进出肠道,报告“发声”的毛虫。当受到干扰时,鼻腔耳鼻喉病鹰嘴幼虫(鞘翅草:两栖佛罗里达斯)产生包含长(370ms)的刻板图案的声火车,然后是多个短持续时间(23ms)单元。声音从口腔发出,通过特写视频确认并比较不同的身体区域的声音振幅。使用毛毛虫前ut的测量的数值模型被构造成测试假设解释声音生产。我们建议声音由环形涡旋产生,因为空气流过两个前utut腔室(作物和食道)之间的孔口,这是一种类似于吹口水壶的机构。随着空气流过孔口,通过食道室的Helmholtz谐振器效果放大某些声频。通货膨胀期间发生长声单元,而通货膨胀期间发生短声单元。据报道,据报道了其他几种昆虫通过强制空气产生声音,但这种声音的气动机制仍然难以捉摸。我们的结果通过表明毛毛虫采用类似于火箭发动机来产生声音的机制提供了这种机制的证据。

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