首页> 外文期刊>Journal of the Academy of Nutrition and Dietetics >Chamber music: an unusual Helmholtz resonator for song amplification in a Neotropical bush-cricket (Orthoptera, Tettigoniidae)
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Chamber music: an unusual Helmholtz resonator for song amplification in a Neotropical bush-cricket (Orthoptera, Tettigoniidae)

机译:室内音乐:一种不寻常的亥姆霍兹谐振器,用于歌曲扩增的歌曲丛(Orthoptera,Tettigoniidae)

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摘要

Animals use sound for communication, with high-amplitude signals being selected for attracting mates or deterring rivals. High amplitudes are attained by employing primary resonators in sound-producing structures to amplify the signal (e.g. avian syrinx). Some species actively exploit acoustic properties of natural structures to enhance signal transmission by using these as secondary resonators (e.g. tree-hole frogs). Male bush-crickets produce sound by tegminal stridulation and often use specialised wing areas as primary resonators. Interestingly, Acanthacara acuta, a Neotropical bush-cricket, exhibits an unusual pronotal inflation, forming a chamber covering the wings. It has been suggested that such pronotal chambers enhance amplitude and tuning of the signal by constituting a (secondary) Helmholtz resonator. If true, the intact system - when stimulated sympathetically with broadband sound should show clear resonance around the song carrier frequency which should be largely independent of pronotum material, and change when the system is destroyed. Using laser Doppler vibrometry on living and preserved specimens, microcomputed tomography, 3D-printed models and finite element modelling, we show that the pronotal chamber not only functions as a Helmholtz resonator owing to its intact morphology but also resonates at frequencies of the calling song on itself, making song production a three-resonator system.
机译:动物使用声音进行通信,选择高幅度信号用于吸引配合或阻止竞争对手。通过在产生的结构结构中采用初级谐振器来实现高振幅以放大信号(例如AVIAN Syrinx)。一些物种积极利用自然结构的声学特性,以通过使用这些作为二次谐振器来增强信号传输(例如树孔青蛙)。男性丛林蟋蟀通过Tegminal Stridulation产生声音,并且经常使用专门的翼区域作为主要谐振器。有趣的是,Acanthacara Acuta是一种新的丛林枝鳞茎,表现出一种不寻常的阴茎通胀,形成覆盖翅膀的腔室。已经提出,通过构成(二次)Helmholtz谐振器来增强信号的幅度和调谐。如果是,则完整的系统 - 当宽带声音相同地刺激时应显示围绕歌曲载波频率的明显共振,这应该在很大程度上独立于前胸材料,并且当系统被破坏时改变。使用激光多普勒振动器在生活和保存的标本上,微锁定断层扫描,3D印刷模型和有限元建模,我们表明阴茎室不仅用作亥姆霍兹谐振器,由于其完整的形态,而且在呼叫歌曲的频率下产生共鸣本身,制作歌曲生产三个谐振器系统。

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