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气流可视化观察对鼻咽部塌陷的影响

Effect of inhalation on oropharynx collapse via flow visualisation.

机构信息

School of Engineering, Royal Melbourne Institute of Technology (RMIT University), Melbourne, Australia; Commonwealth Science and Industrial Research Organisation (CSIRO), Manufacturing, Clayton Victoria 3168, Melbourne, Australia.

School of Engineering, Royal Melbourne Institute of Technology (RMIT University), Melbourne, Australia.

出版信息

J Biomech. 2021 Mar 30;118:110200. doi: 10.1016/j.jbiomech.2020.110200. Epub 2020 Dec 26.

Abstract

Computational fluid dynamics (CFD) modelling has made significant contributions to the analysis and treatment of obstructive sleep apnoea (OSA). While several investigations have considered the flow field within the airway and its effect on airway collapse, the effect of breathing on the pharynx region is still poorly understood. We address this gap via a combined experimental and numerical study of the flow field within the pharynx and its impacts upon airway collapse. Two 3D experimental models of the upper airway were constructed based upon computerised tomography scans of a specific patient diagnosed with severe OSA; (i) a transparent, rigid model for flow visualisation, and (ii) a semi-flexible model for understanding the effect of flow on pharynx collapse. Validated simulation results for this geometry indicate that during inhalation, negative pressure (with respect to atmospheric pressure) caused by vortices drives significant narrowing of the pharynx. This narrowing is strongly dependent upon whether inhalation occurs through the nostrils. Thus, the methodology presented here can be used to improve OSA treatment by improving the design methodology for personalised, mandibular advancement splints (MAS) that minimise OSA during sleep.

摘要

计算流体动力学 (CFD) 建模在阻塞性睡眠呼吸暂停 (OSA) 的分析和治疗方面做出了重要贡献。虽然有几项研究考虑了气道内的流场及其对气道塌陷的影响,但呼吸对咽区的影响仍知之甚少。我们通过对咽腔内流场及其对气道塌陷影响的综合实验和数值研究来解决这一差距。基于对一位被诊断为严重 OSA 的特定患者的计算机断层扫描,构建了两个上气道的 3D 实验模型:(i) 用于流动可视化的透明刚性模型,和 (ii) 用于了解流对咽塌陷影响的半柔性模型。该几何形状的验证模拟结果表明,在吸气过程中,由涡旋引起的负压(相对于大气压)导致咽腔显著变窄。这种变窄强烈依赖于吸气是否通过鼻孔进行。因此,这里提出的方法可以通过改进个性化下颌前伸矫治器 (MAS) 的设计方法来改善 OSA 治疗,从而在睡眠期间最小化 OSA。

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