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A computational analysis of nasal vestibule morphologic variabilities on nasal function

机译:鼻前庭形态变化对鼻功能的计算分析

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Although advances in computational modeling have led to increased understanding of nasal airflow, not much is known about the effects of normal sinonasal anatomic variabilities on nasal function. In this study, three distinct variations in the human nasal vestibule airspace that have not been previously described were identified. Computational fluid dynamics modeling of nasal airflow profile in each identified variation of nasal vestibule phenotype was conducted to assess the role of these phenotypes on nasal physiology. Three-dimensional reconstructions of the nasal geometry in sixteen subjects with normal radiographic sinonasal images were created and each respective unilateral nasal cavity was classified as Notched, Standard, or Elongated phenotype based nasal vestibule morphology. Steady state, laminar and incompressible flow simulations were performed in the nasal geometries under physiological, pressure-driven conditions with constant inspiratory pressure. Results showed that at localized regions of the unilateral nasal cavity, average resistance was significantly different among nasal vestibule phenotypes. However, global comparison from nostril to choana showed that average resistance was not significantly different across phenotypes; suggesting that with normal anatomic variations, the nose has a natural compensatory mechanism that modulates localized airflow in order to achieve a desired amount of global airflow. (C) 2016 Elsevier Ltd. All rights reserved.
机译:尽管计算模型的进步导致人们对鼻气流的了解增加,但对正常鼻窦解剖变异对鼻功能的影响知之甚少。在这项研究中,确定了人类鼻前庭空域三个以前没有描述过的明显变化。在确定的鼻前庭表型变异中进行鼻气流分布的计算流体动力学建模,以评估这些表型在鼻生理中的作用。创建具有正常放射成像鼻窦图像的16位受试者的鼻腔几何结构的三维重建,并将每个相应的单侧鼻腔分为基于缺口,标准或伸长表型的鼻前庭形态。在恒定的吸气压力下,在生理,压力驱动条件下,在鼻腔几何形状中进行稳态,层流和不可压缩流动模拟。结果表明,在单侧鼻腔的局部区域,鼻前庭表型之间的平均抵抗力显着不同。然而,从鼻孔到鼻孔的整体比较表明,不同表型的平均抗药性没有显着差异。这表明鼻子具有正常的解剖变化,鼻子具有自然的补偿机制,可调节局部气流,以实现所需的整体气流。 (C)2016 Elsevier Ltd.保留所有权利。

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