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首页> 外文期刊>Respiratory physiology & neurobiology >Frictional resistance sheds light on the multicomponent nature of nasal obstruction: A combined in vivo and computational fluid dynamics study
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Frictional resistance sheds light on the multicomponent nature of nasal obstruction: A combined in vivo and computational fluid dynamics study

机译:摩擦阻力揭示了鼻塞的多组分性质:体内和计算流体动力学的组合研究

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摘要

Exploring nasal flow contributes to better understanding of pathophysiological functions of nasal cavities. We combined the rhinomanometry measurements of 11 patients and computational fluid dynamics (CFD) simulations in 3 nasal airway models to dissect the complex mechanisms that determine nasal flow obstruction: spatial complexity and pressure-dependent deformability of nasal airways. We quantified spatial complexity by calculating longitudinal variations of hydraulic diameter, perimeter and area of nasal cavities, and their impact on flow characteristics by examining the longitudinal variations of the kinetic energy coefficient and the kinetic to potential energy ratio. Airway distensibility variably affected in vivo pressure-flow relationships through the appearance of flow-limitation patterns characterized by maximum flow and/or flow plateau. We quantified deformability and spatial complexity effects on nasal airway resistance by normalizing all data with averaged reference parameters. The results show that discrepancies in nasal flow resistances reflect airway deformability and geometrical complexity, and thereby constitute a framework to better characterize nasal obstruction.
机译:探索鼻腔流动有助于更好地了解鼻腔的病理生理功能。我们结合了11位患者的鼻压测量和3种鼻道模型的计算流体力学(CFD)模拟,以剖析确定鼻道阻塞的复杂机制:空间复杂性和鼻道压力依赖性变形。通过计算水力直径,鼻腔周长和面积的纵向变化及其对流动特性的影响,我们通过检查动能系数和动能比的纵向变化来量化空间复杂度。气道扩张性通过以最大流量和/或流量平稳为特征的流量限制模式的出现而可变地影响体内压力-流量关系。我们通过平均参考参数对所有数据进行归一化,量化了可变形性和空间复杂性对鼻气道阻力的影响。结果表明,鼻腔流动阻力的差异反映了气道的可变形性和几何形状的复杂性,从而构成了更好地表征鼻塞的框架。

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