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鼻息肉位置对嗅觉气流和嗅觉的影响。

Influence of the location of nasal polyps on olfactory airflow and olfaction.

机构信息

Department of Otolaryngology, The University of Tokyo, Tokyo, Japan.

Department of Mechanical Engineering, National Institute of Technology, Gifu College, Gifu, Japan.

出版信息

Int Forum Allergy Rhinol. 2018 Jun;8(6):695-706. doi: 10.1002/alr.22089. Epub 2018 Feb 2.

Abstract

BACKGROUND

Chronic rhinosinusitis with nasal polyps (CRSwNP) often results in decreased olfaction. In this study, we examined the relationship between nasal polyp location and olfactory airflow and odorant transport changes using virtual nasal polyp models at different locations and computational fluid dynamics (CFD) analysis. We also compared olfactory airflow and olfaction between patients with nasal polyps at different locations using CFD analysis and an olfactory test.

METHODS

Nasal computed tomography images were used to generate a normal model and 4 virtual nasal polyp models based on polyp locations, including the olfactory region (all-olfactory model), the region anterior to the olfactory region (preolfactory model), the middle meatus (middle-meatus model), and the superior meatus (superior-meatus model). Various airflow parameters were compared between these models and a normal model without polyps. We then performed a similar comparison between the 3-dimensional (3D) reconstruction models of patients with nasal polyps, and retrospectively investigated the correlation between olfaction and nasal polyp location in those patients.

RESULTS

Virtual nasal polyp analysis revealed dispersion of olfactory airflow in the all-olfactory model. Olfactory airflow and odorant transport showed maximum decrease in the preolfactory model and a slight decrease in the superior-meatus model. Olfactory airflow by polyps was further decreased by blockade of the olfactory airflow inlet than of the outlet. The findings obtained by patients corresponded well to those of the virtual polyp analysis.

CONCLUSION

Olfactory airflow and olfaction are differentially affected by nasal polyp location. This finding is important for planning polyp-removal surgeries from the perspective of improving patient olfaction.

摘要

背景

慢性鼻-鼻窦炎伴鼻息肉(CRSwNP)常导致嗅觉减退。本研究通过构建不同位置的虚拟鼻息肉模型并结合计算流体动力学(CFD)分析,研究了鼻息肉位置与嗅觉气流和气味传输变化的关系。我们还通过 CFD 分析和嗅觉测试比较了不同位置鼻息肉患者的嗅觉气流和嗅觉。

方法

利用鼻窦 CT 图像构建了正常模型和 4 个基于息肉位置的虚拟鼻息肉模型,包括嗅区(全嗅模型)、嗅区前(前嗅模型)、中鼻甲(中鼻甲模型)和上鼻甲(上鼻甲模型)。比较了这些模型与无息肉的正常模型之间的各种气流参数。然后,我们对鼻息肉患者的 3D 重建模型进行了类似的比较,并回顾性研究了这些患者嗅觉与鼻息肉位置的相关性。

结果

虚拟鼻息肉分析显示,全嗅模型中的嗅觉气流分布分散。前嗅模型中的嗅觉气流和气味传输显示出最大程度的下降,而上鼻甲模型则略有下降。通过阻塞嗅觉气流入口而非出口,息肉引起的嗅觉气流进一步减少。患者的发现与虚拟息肉分析结果相符。

结论

鼻息肉的位置会对嗅觉气流和嗅觉产生不同的影响。从改善患者嗅觉的角度来看,这一发现对规划息肉切除术具有重要意义。

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