Häsner Patrick, Birkholz Peter
Institute of Acoustics and Speech Communication, Technische Universität Dresden, Saxony, Germany.
J Voice. 2023 Mar 23. doi: 10.1016/j.jvoice.2023.02.028.
In this study, silicone vocal fold models with different geometries were manufactured using the common silicone brand EcoFlex 00-30 with typical oil mixing ratios. However, the proportions of oil typically used are higher than the manufacturer's recommended limit, in order to attain the softness of human vocal folds. This additional oil causes direct effects on the silicone, such as shrinkage, stickiness, evaporation, embrittlement, and uneven vulcanization. This study investigated the impact of these effects on the oscillation characteristics of the silicone vocal fold models and how they change over time. The goal was to examine the comparability of produced silicone vocal fold models and the results obtained from experiments performed with these models. For the manufactured models, the phonation onset pressure, offset pressure, mean volume velocity, pulmonary power, fundamental frequency, and measures of the glottal area waveform were collected over a period of up to 8 weeks. The results showed that the data for the models were highly scattered. Furthermore, over time, the phonation onset/offset pressures increased, leading to failure to oscillate for some models, and the glottal area waveform also changed. In conclusion, when working with over-thinned silicone vocal fold models, their characteristics depend strongly on the time of measurement. Therefore, it is recommended to carefully consider the effects of oil-oversaturation and timing of measurements when using silicone vocal fold models in experiments.
在本研究中,使用常见的硅胶品牌EcoFlex 00 - 30及典型的油混合比例制造了具有不同几何形状的硅胶声带模型。然而,为了达到人类声带的柔软度,通常使用的油比例高于制造商推荐的限度。这种额外的油会对硅胶产生直接影响,如收缩、粘性、蒸发、变脆和硫化不均匀。本研究调查了这些影响对硅胶声带模型振荡特性的影响以及它们如何随时间变化。目的是检验所生产的硅胶声带模型之间的可比性以及使用这些模型进行实验所获得的结果。对于制造的模型,在长达8周的时间内收集了发声起始压力、终止压力、平均体积速度、肺功率、基频以及声门面积波形的测量值。结果表明,模型的数据高度分散。此外,随着时间的推移,发声起始/终止压力增加,导致一些模型无法振荡,并且声门面积波形也发生了变化。总之,使用过度稀释的硅胶声带模型时,其特性在很大程度上取决于测量时间。因此,建议在实验中使用硅胶声带模型时,仔细考虑油过饱和的影响和测量时间。