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Structural biomechanics determine spectral purity of bush-cricket calls

机译:结构生物力学决定灌木-呼叫的频谱纯度

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摘要

Bush-crickets (Orthoptera: Tettigoniidae) generate sound using tegminal stridulation. Signalling effectiveness is affected by the widely varying acoustic parameters of temporal pattern, frequency and spectral purity (tonality). During stridulation, frequency multiplication occurs as a scraper on one wing scrapes across a file of sclerotized teeth on the other. The frequency with which these tooth–scraper interactions occur, along with radiating wing cell resonant properties, dictates both frequency and tonality in the call. Bush-cricket species produce calls ranging from resonant, tonal calls through to non-resonant, broadband signals. The differences are believed to result from differences in file tooth arrangement and wing radiators, but a systematic test of the structural causes of broadband or tonal calls is lacking. Using phylogenetically controlled structural equation models, we show that parameters of file tooth density and file length are the best-fitting predictors of tonality across 40 bush-cricket species. Features of file morphology constrain the production of spectrally pure signals, but systematic distribution of teeth alone does not explain pure-tone sound production in this family.
机译:布什-(直翅目:Tettigoniidae)会通过端部id纹产生声音。信号有效性受时间模式,频率和频谱纯度(音调)的广泛变化的声学参数影响。在频发过程中,倍频发生在一个机翼上的一个刮板刮擦另一只机翼上的一块硬化齿。这些刮齿器相互作用的频率,以及辐射的翼细胞共振特性,决定了通话中的频率和音调。布什cri物种产生的呼叫范围从共振的音调呼叫到非共振的宽带信号。认为差异是由于齿齿排列和机翼散热器的差异而引起的,但是缺乏对宽带或音调呼叫的结构原因的系统测试。使用系统发育控制的结构方程模型,我们表明,锉齿密度和锉长参数是40种灌木bush物种音调的最合适预测因子。文件形态的特征限制了频谱纯信号的产生,但是仅牙齿的系统分布并不能解释该家族中纯音的产生。

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