Assaneo M F, Trevisan M A
Laboratorio de Sistemas Dinámicos, Departamento de Física, FCEyN, Universidad de Buenos Aires, Ciudad Universitaria 1428EGA, Buenos Aires, Argentina.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Sep;82(3 Pt 1):031906. doi: 10.1103/PhysRevE.82.031906. Epub 2010 Sep 16.
In a recent work, active use of the vocal tract has been reported for singing oscines. The reconfiguration of the vocal tract during song serves to match its resonances to the syringeal fundamental frequency, demonstrating a precise coordination of the two main pieces of the avian vocal system for songbirds characterized by tonal songs. In this work we investigated the Great Kiskadee (Pitangus sulfuratus), a suboscine bird whose calls display a rich harmonic content. Using a recently developed mathematical model for the syrinx and a mobile vocal tract, we set up a computational model that provides a plausible reconstruction of the vocal tract movement using a few spectral features taken from the utterances. Moreover, synthetic calls were generated using the articulated vocal tract that accounts for all the acoustical features observed experimentally.
在最近的一项研究中,有报告称鸣禽在唱歌时会积极运用声道。在唱歌过程中,声道的重新配置是为了使其共振与鸣管基频相匹配,这表明对于以音调歌曲为特征的鸣禽而言,其鸟类发声系统的两个主要部分之间存在精确的协调。在这项研究中,我们对大嘴霸鹟(Pitangus sulfuratus)进行了调查,它是一种亚鸣禽,其叫声具有丰富的谐波成分。我们使用最近开发的一种针对鸣管和可移动声道的数学模型,建立了一个计算模型,该模型利用从发声中提取的一些频谱特征,对声道运动进行了合理的重建。此外,使用考虑了所有实验观察到的声学特征的关节式声道生成了合成叫声。