论文标题
在特定语音任务中的气溶胶排放比较
Comparison of aerosol emissions during specific speech tasks
论文作者
论文摘要
在整个Covid-19大流行中,从口腔发出的气溶胶和液滴的研究变得越来越重要。研究表明,与咳嗽或打喷嚏相比,说话时发出的微粒通常要小得多。但是,最近的调查表明,它们足够大,可以携带呼吸道传染。尽管研究表明,迄今为止,在语音期间确实确实发生了颗粒物排放,但关于不同语音在产生粒子排放中不同语音的相对贡献的信息很少。这项研究比较了产生孤立语音的参与者中空气中的气溶胶产生:摩擦辅音,plosive辅音和元音声音。尽管参与者产生了孤立的语音任务,但激光灯(高速相机)的平面光束和图像软件计算了被检测到的加时性的颗粒数量。这项研究比较了人类参与者在激光片和嘴之间以2.54 cm的距离发出的空气传播气溶胶,并揭示了所有语音声音的颗粒计数的统计学意义增加。元音的声音在统计上大于辅音,这表明张口的张口与声带收缩的位置或声音产生方式相反,可能是颗粒在语音过程中雾化的程度上的主要影响。这项研究的结果将为言语过程中雾化颗粒的计算模型提供边界条件。
The study of aerosols and droplets emitted from the oral cavity has become increasingly important throughout the COVID-19 pandemic. Studies show particulates emitted while speaking were generally much smaller compared to coughing or sneezing. However, recent investigations revealed that they are large enough to carry respiratory contagions. Although studies have shown that particulate emissions do indeed occur during speech, to date, there is little information about the relative contribution of different speech sounds in producing particle emissions. This study compares airborne aerosol generation in participants producing isolated speech sounds: fricative consonants, plosive consonants, and vowel sounds. While participants produced isolated speech tasks, a planar beam of laser light, a high-speed camera, and image software calculated the number of particulates detected overtime. This study compares airborne aerosols emitted by human participants at a distance of 2.54 cm between the laser sheet and the mouth and reveals statistically significant increases in particulate counts over ambient dust distribution for all speech sounds. Vowel sounds were statistically greater than consonants, suggesting that mouth opening, as opposed to place of vocal tract constriction or manner of sound production, might be the primary influence in the degree to which particulates become aerosolized during speech. Results of this research will inform boundary conditions for computation models of aerosolized particulates during speech.