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3
Inhalation and deposition of spherical and pollen particles after middle turbinate resection in a human nasal cavity.中鼻甲切除后人鼻腔中球形和花粉颗粒的吸入和沉积。
Respir Physiol Neurobiol. 2021 Dec;294:103769. doi: 10.1016/j.resp.2021.103769. Epub 2021 Aug 2.
4
Nasal Septal Swell Body: A Distinctive Structure in the Nasal Cavity.
Ear Nose Throat J. 2021 Apr 21:1455613211010093. doi: 10.1177/01455613211010093.
5
Quantification of airflow in the sinuses following functional endoscopic sinus surgery.功能性内窥镜鼻窦手术后鼻窦内气流的量化。
Rhinology. 2020 Jun 1;58(3):257-265. doi: 10.4193/Rhin19.387.
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Barrier Protection Measures for the Management of Allergic Rhinitis: A Systematic Review and Meta-analysis.变应性鼻炎管理的屏障保护措施:系统评价和荟萃分析。
Am J Rhinol Allergy. 2020 Jul;34(4):564-572. doi: 10.1177/1945892420912370. Epub 2020 Mar 16.
7
Is Nasal Septal Body Size Associated With Inferior Turbinate Hypertrophy and Allergic Rhinitis?鼻中隔体大小与下鼻甲肥大及变应性鼻炎有关吗?
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8
[Computational investigation of Artemisia pollen deposition in realistic nasal cavities of residents in northwest China].
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Computational investigation of dust mite allergens in a realistic human nasal cavity.在逼真的人类鼻腔中对尘螨过敏原进行计算研究。
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A systematic review of the nasal septal turbinate: An overlooked surgical target.鼻中隔鼻甲的系统评价:一个被忽视的手术靶点。
Am J Otolaryngol. 2019 Nov-Dec;40(6):102188. doi: 10.1016/j.amjoto.2019.03.003. Epub 2019 Mar 4.

[鼻鼻甲对鼻气流及蒿属花粉沉积的影响]

[Effect of nasal swell body on nasal airflow and Artemisia pollen deposition].

作者信息

Zhang Ya, Ma Ruiping, Wang Yusheng, Dong Jingliang, Zhang Jingbin, Hu Zhenzhen, Yang Feilun, Gong Minjie, Lou Miao, Tian Lin, Zhang Luyao, Wang Botao, Peng Yuping, Zheng Guoxi

机构信息

Department of Otolaryngology Head and Neck Surgery,the Second Affiliated Hospital of Xi'an Jiaotong University,Xi'an,710000,China.

Institute for Sustainable Industries & Liveable Cities,Victoria University,Australia.

出版信息

Lin Chuang Er Bi Yan Hou Tou Jing Wai Ke Za Zhi. 2023 Jul;37(7):535-541. doi: 10.13201/j.issn.2096-7993.2023.07.006.

DOI:10.13201/j.issn.2096-7993.2023.07.006
PMID:37549945
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10570100/
Abstract

The nasal swell body(NSB) consists of the nasal septal cartilage, nasal bone, and swollen soft tissue, all of which are visible during endoscopic and imaging examinations. Although the function of the NSB remains uncertain, there is evidence to suggest that it plays a vital role in regulating nasal airflow and filtering inhaled air. Based on anatomical and histological evidence, it is hypothesized that the NSB is indispensable in these processes. This study aims to investigate the impact of NSB on nasal aerodynamics and the deposition of allergen particles under physiological conditions. The three-dimensional (3D) nasal models were reconstructed from computed tomography (CT) scans of the paranasal sinus and nasal cavity in 30 healthy adult volunteers from Northwest China, providing basis for the construction of models without NSB following virtual NSB-removal surgery. To analyze the distribution of airflow in the nasal cavity, nasal resistance, heating and humidification efficiency, and pollen particle deposition rate at various anatomical sites, we employed the computed fluid dynamics(CFD) method for numerical simulation and quantitative analysis. In addition, we created fully transparent segmented nasal cavity models through 3D printing, which were used to conduct bionic experiments to measure nasal resistance and allergen particle deposition. ①The average width and length of the NSB in healthy adults in Northwest China were (12.85±1.74) mm and (28.30±1.92) mm, respectively. ②After NSB removal, there was no significant change in total nasal resistance, and cross-sectional airflow velocity remained essentially unaltered except for a decrease in topical airflow velocity in the NSB plane. ③There was no discernible difference in the nasal heating and humidification function following the removal of the NSB; ④After NSB removal, the deposition fraction(DF) of Artemisia pollen in the nasal septum decreased, and the DFs post-and pre-NSB removal were(22.79±6.61)% vs (30.70±12.27)%, respectively; the DF in the lower airway increased, and the DFs post-and pre-NSB removal were(24.12±6.59)% vs (17.00±5.57)%, respectively. This study is the first to explore the effects of NSB on nasal airflow, heating and humidification, and allergen particle deposition in a healthy population. After NSB removal from the healthy nasal cavities: ①nasal airflow distribution was mildly altered while nasal resistance showed no significantly changed; ②nasal heating and humidification were not significantly changed; ③the nasal septum's ability to filter out Artemisia pollen was diminished, which could lead to increased deposition of Artemisia pollen in the lower airway.

摘要

鼻膨体(NSB)由鼻中隔软骨、鼻骨和肿胀的软组织组成,在内镜检查和影像学检查中均可见。尽管NSB的功能尚不确定,但有证据表明它在调节鼻气流和过滤吸入空气方面起着至关重要的作用。基于解剖学和组织学证据,推测NSB在这些过程中不可或缺。本研究旨在探讨生理条件下NSB对鼻空气动力学和过敏原颗粒沉积的影响。从中国西北30名健康成年志愿者的鼻窦和鼻腔计算机断层扫描(CT)图像重建三维(3D)鼻腔模型,为虚拟切除NSB手术后构建无NSB模型提供依据。为分析鼻腔内气流分布、鼻阻力、加热和加湿效率以及不同解剖部位的花粉颗粒沉积率,我们采用计算流体动力学(CFD)方法进行数值模拟和定量分析。此外,我们通过3D打印制作了完全透明的分段鼻腔模型,用于进行仿生实验以测量鼻阻力和过敏原颗粒沉积。①中国西北健康成年人NSB的平均宽度和长度分别为(12.85±1.74)mm和(28.30±1.92)mm。②切除NSB后,总鼻阻力无显著变化,除NSB平面局部气流速度降低外,横截面积气流速度基本保持不变。③切除NSB后鼻加热和加湿功能无明显差异;④切除NSB后,鼻中隔中蒿属花粉的沉积分数(DF)降低,切除前后的DF分别为(22.79±6.61)%和(30.70±12.27)%;下气道中的DF增加,切除前后的DF分别为(24.12±6.59)%和(17.00±5.57)%。本研究首次探讨了健康人群中NSB对鼻气流、加热和加湿以及过敏原颗粒沉积的影响。在从健康鼻腔中切除NSB后:①鼻气流分布略有改变,而鼻阻力无显著变化;②鼻加热和加湿无显著变化;③鼻中隔过滤蒿属花粉的能力减弱,这可能导致蒿属花粉在下气道中的沉积增加。