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Sensitivity of Acoustic Resonance Properties to a Change in Volume of Piriform Sinuses

机译:声谐振特性对吡虫穗体积变化的敏感性

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摘要

Piriform sinuses (PS), side branches of the human vocal tract, produce extra resonances and antiresonances which influence the quality of produced voice. These acoustic resonant characteristics can be numerically simulated by 3D finite element models of the vocal tract with lateral cavities. Computations that use these accurate methods are very time consuming, therefore this study introduces a simplified 1D mathematical model to analyse acoustical effects of side branches. Although the 1D model cannot capture higher-frequency transversal mode shapes, the resulted changes caused by piriform sinuses partially correspond to recent findings of 3D computational models. New pair of resonances around 5 kHz followed by an antiresonance frequency were detected in the results of the model including PS. The first four resonance frequencies lying below the first new resonance of PS decreased with increasing PS volume and similarly both the new resonances of PS. The higher original resonances increased with increasing PS volume.
机译:人声道的侧枝(PS),人声道的侧分支,产生额外的共振和反弓,影响产生的声音的质量。这些声学谐振特性可以通过具有横向腔的3D有限元模型来数值模拟。使用这些准确方法的计算非常耗时,因此本研究介绍了一种简化的1D数学模型来分析侧分支的声学效应。尽管1D模型不能捕获更高频率的横向模式形状,但是由吡虫窦引起的导致变化部分对应于3D计算模型的最近发现。在包括PS的模型的结果中检测到约5 kHz的新的共振,然后在包括PS的模型的结果中检测到反谐振频率。下面的第一个四个共振频率下面的PS的第一个新共振随着PS体积的增加而降低,并且类似于PS的新共振。较高的原始共振随着PS体积的增加而增加。

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