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A Subject-Specific Acoustic Model of the Upper Airway for Snoring Sounds Generation

机译:用于打鼾声音的上气道的主题专用声学模型

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Monitoring variations in the upper airway narrowing during sleep is invasive and expensive. Since snoring sounds are generated by air turbulence and vibrations of the upper airway due to its narrowing; snoring sounds may be used as a non-invasive technique to assess upper airway narrowing. Our goal was to develop a subject-specific acoustic model of the upper airway to investigate the impacts of upper airway anatomy, e.g. length, wall thickness and cross-sectional area, on snoring sounds features. To have a subject-specific model for snoring generation, we used measurements of the upper airway length, cross-sectional area and wall thickness from every individual to develop the model. To validate the proposed model, in 20 male individuals, intensity and resonant frequencies of modeled snoring sounds were compared with those measured from recorded snoring sounds during sleep. Based on both modeled and measured results, we found the only factor that may positively and significantly contribute to snoring intensity was narrowing in the upper airway. Furthermore, measured resonant frequencies of snoring were inversely correlated with the upper airway length, which is a risk factor for upper airway collapsibility. These results encourage the use of snoring sounds analysis to assess the upper airway anatomy during sleep.
机译:监测睡眠期间缩小的上呼吸道的变化是侵入性和昂贵的。由于由于其缩小,因此通过空气湍流和上气道的振动产生的调味声音;打鼾声音可以用作非侵入性技术来评估上呼吸道缩小。我们的目标是开发上呼吸道的特定主题声学模型,以研究上呼吸道解剖学的影响,例如,在打鼾声音功能上的长度,壁厚和横截面积。为了让课堂专用模型进行打鼾,我们使用了从每个人的上气道长度,横截面积和壁厚的测量来开发模型。为了验证所提出的模型,在20个男性个人中,与睡眠期间记录的打鼾声音测量的那些相比,对模型打鼾声音的强度和谐振频率进行了比较。基于模拟和测量结果,我们发现上呼吸道中唯一可能积极且显着促进打鼾强度的唯一因素。此外,调节的调节频率与上气道长度相反,这是上气道可折叠的危险因素。这些结果鼓励使用打鼾声音分析来评估睡眠期间的上气道解剖学。

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