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首页> 外文期刊>The Journal of the Acoustical Society of America >The source-filter theory of whistle-like calls in marmosets: Acoustic analysis and simulation of helium-modulated voices
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The source-filter theory of whistle-like calls in marmosets: Acoustic analysis and simulation of helium-modulated voices

机译:mos猴哨子声的源滤波器理论:氦调制语音的声学分析和模拟

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摘要

Whistle-like high-pitched "phee" calls are often used as long-distance vocal advertisements by small-bodied marmosets and tamarins in the dense forests of South America. While the source-filter theory proposes that vibration of the vocal fold is modified independently from the resonance of the supralaryngeal vocal tract (SVT) in human speech, a source-filter coupling that constrains the vibration frequency to SVT resonance effectively produces loud tonal sounds in some musical instruments. Here, a combined approach of acoustic analyses and simulation with helium-modulated voices was used to show that phee calls are produced principally with the same mechanism as in human speech. The animal keeps the fundamental frequency (f(0)) close to the first formant (F-1) of the SVT, to amplify f(0). Although f(0) and F-1 are primarily independent, the degree of their tuning can be strengthened further by a flexible source-filter interaction, the variable strength of which depends upon the cross-sectional area of the laryngeal cavity. The results highlight the evolutionary antiquity and universality of the source-filter model in primates, but the study can also explore the diversification of vocal physiology, including source-filter interaction and its anatomical basis in non-human primates. (C) 2015 Acoustical Society of America.
机译:在南美茂密的森林中,矮小的mar猴和绢毛猴经常用哨子般的高音“ phe”来作为长途声乐广告。尽管信源滤波器理论提出声带振动的改变独立于人语音中的上咽喉声道(SVT)的共振,但是将振动频率限制为SVT共振的声源滤波器耦合有效地产生了大声的音调。一些乐器。在这里,结合了氦分析语音的声学分析和模拟相结合的方法,可以证明产生的phee呼叫主要具有与人类语音相同的机制。动物保持基本频率(f(0))接近SVT的第一个共振峰(F-1),以放大f(0)。尽管f(0)和F-1主要是独立的,但是它们的调谐程度可以通过灵活的源滤器交互作用进一步增强,其可变强度取决于喉腔的横截面积。结果突出了灵长类动物源过滤器模型的进化古代和普遍性,但该研究还可以探索声音生理学的多样性,包括非人灵长类动物中声源过滤器的相互作用及其解剖学基础。 (C)2015年美国声学学会。

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