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首页> 外文期刊>Clinical and Experimental Otorhinolaryngology >Impacts of Fluid Dynamics Simulation in Study of Nasal Airflow Physiology and Pathophysiology in Realistic Human Three-Dimensional Nose Models
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Impacts of Fluid Dynamics Simulation in Study of Nasal Airflow Physiology and Pathophysiology in Realistic Human Three-Dimensional Nose Models

机译:逼真的人体三维鼻子模型中流体动力学模拟对鼻气流生理和病理生理研究的影响

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摘要

During the past decades, numerous computational fluid dynamics (CFD) studies, constructed from CT or MRI images, have simulated human nasal models. As compared to rhinomanometry and acoustic rhinometry, which provide quantitative information only of nasal airflow, resistance, and cross sectional areas, CFD enables additional measurements of airflow passing through the nasal cavity that help visualize the physiologic impact of alterations in intranasal structures. Therefore, it becomes possible to quantitatively measure, and visually appreciate, the airflow pattern (laminar or turbulent), velocity, pressure, wall shear stress, particle deposition, and temperature changes at different flow rates, in different parts of the nasal cavity. The effects of both existing anatomical factors, as well as post-operative changes, can be assessed. With recent improvements in CFD technology and computing power, there is a promising future for CFD to become a useful tool in planning, predicting, and evaluating outcomes of nasal surgery. This review discusses the possibilities and potential impacts, as well as technical limitations, of using CFD simulation to better understand nasal airflow physiology.
机译:在过去的几十年中,从CT或MRI图像构建的许多计算流体动力学(CFD)研究都已经模拟了人类的鼻腔模型。与仅提供鼻部气流,阻力和横截面积的定量信息的鼻压法和声学鼻部测量法相比,CFD可以对流经鼻腔的气流进行更多测量,从而有助于可视化鼻内结构变化的生理影响。因此,有可能在鼻腔的不同部分中以不同的流速定量测量和视觉观察气流模式(层流或湍流),速度,压力,壁切应力,颗粒沉积和温度变化。既可以评估现有的解剖学因素的影响,也可以评估术后的变化。随着CFD技术和计算能力的最新改进,CFD有望成为规划,预测和评估鼻外科手术结果的有用工具。这篇综述讨论了使用CFD模拟更好地了解鼻气流生理的可能性和潜在影响以及技术局限性。

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