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本文引用的文献

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Computational Fluid Dynamics to Evaluate the Effectiveness of Inferior Turbinate Reduction Techniques to Improve Nasal Airflow.计算流体动力学评估下鼻甲缩小技术改善鼻腔气流效果的有效性。
JAMA Facial Plast Surg. 2018 Jul 1;20(4):263-270. doi: 10.1001/jamafacial.2017.2296.
2
Investigation of the abnormal nasal aerodynamics and trigeminal functions among empty nose syndrome patients.空鼻综合征患者异常鼻腔气流动力学和三叉神经功能的研究。
Int Forum Allergy Rhinol. 2018 Mar;8(3):444-452. doi: 10.1002/alr.22045. Epub 2017 Nov 22.
3
Erratum: Determinants and Evaluation of Nasal Airflow Perception.勘误:鼻气流感知的决定因素与评估
Facial Plast Surg. 2017 Oct;33(5):553-554. doi: 10.1055/s-0037-1607209. Epub 2017 Sep 29.
4
Computational modeling and validation of human nasal airflow under various breathing conditions.不同呼吸条件下人体鼻腔气流的计算建模与验证
J Biomech. 2017 Nov 7;64:59-68. doi: 10.1016/j.jbiomech.2017.08.031. Epub 2017 Sep 5.
5
Determinants and Evaluation of Nasal Airflow Perception.鼻气流感知的决定因素与评估
Facial Plast Surg. 2017 Aug;33(4):372-377. doi: 10.1055/s-0037-1603788. Epub 2017 Jul 28.
6
Computational fluid dynamics evaluation of posterior septectomy as a viable treatment option for large septal perforations.作为大型鼻中隔穿孔可行治疗方案的后鼻中隔切除术的计算流体动力学评估
Int Forum Allergy Rhinol. 2017 Jul;7(7):718-725. doi: 10.1002/alr.21951. Epub 2017 May 23.
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Investigating the case of human nose shape and climate adaptation.探究人类鼻子形状与气候适应性的案例。
PLoS Genet. 2017 Mar 16;13(3):e1006616. doi: 10.1371/journal.pgen.1006616. eCollection 2017 Mar.
8
Computational fluid dynamics and trigeminal sensory examinations of empty nose syndrome patients.空鼻综合征患者的计算流体动力学和三叉神经感觉检查
Laryngoscope. 2017 Jun;127(6):E176-E184. doi: 10.1002/lary.26530. Epub 2017 Mar 9.
9
A computational analysis of nasal vestibule morphologic variabilities on nasal function.鼻前庭形态变异对鼻腔功能的计算机分析
J Biomech. 2016 Feb 8;49(3):450-7. doi: 10.1016/j.jbiomech.2016.01.009. Epub 2016 Jan 19.
10
Genetic basis of olfactory cognition: extremely high level of DNA sequence polymorphism in promoter regions of the human olfactory receptor genes revealed using the 1000 Genomes Project dataset.嗅觉认知的遗传基础:使用 1000 基因组计划数据集揭示了人类嗅觉受体基因启动子区域内极高水平的 DNA 序列多态性。
Front Psychol. 2014 Mar 24;5:247. doi: 10.3389/fpsyg.2014.00247. eCollection 2014.

可能有益于正常嗅觉敏感性的鼻腔结构和空气动力学特征。

Nasal Structural and Aerodynamic Features That May Benefit Normal Olfactory Sensitivity.

机构信息

Department of Otolaryngology-Head & Neck Surgery, The Ohio State University, Columbus, OH, USA.

Department of Biomedical Engineering, The Ohio State University, Columbus, OH, USA.

出版信息

Chem Senses. 2018 Apr 23;43(4):229-237. doi: 10.1093/chemse/bjy013.

DOI:10.1093/chemse/bjy013
PMID:29474516
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5913651/
Abstract

Nasal airflow that effectively transports ambient odors to the olfactory receptors is important for human olfaction. Yet, the impact of nasal anatomical variations on airflow pattern and olfactory function is not fully understood. In this study, 22 healthy volunteers were recruited and underwent computed tomographic scans for computational simulations of nasal airflow patterns. Unilateral odor detection thresholds (ODT) to l-carvone, phenylethyl alcohol (PEA) and d-limonene were also obtained for all participants. Significant normative variations in both nasal anatomy and aerodynamics were found. The most prominent was the formation of an anterior dorsal airflow vortex in some but not all subjects, with the vortex size being significantly correlated with ODT of l-carvone (r = 0.31, P < 0.05). The formation of the vortex is likely the result of anterior nasal morphology, with the vortex size varying significantly with the nasal index (ratio of the width and height of external nose, r = -0.59, P < 0.001) and nasal vestibule "notch" index (r = 0.76, P < 0.001). The "notch" is a narrowing of the upper nasal vestibule cartilage region. The degree of the notch also significantly correlates with ODT for PEA (r = 0.32, P < 0.05) and l-carvone (r = 0.33, P < 0.05). ODT of d-limonene, a low mucosal soluble odor, does not correlate with any of the anatomical or aerodynamic variables. The current study revealed that nasal anatomy and aerodynamics might have a significant impact on normal olfactory sensitivity, with greater airflow vortex and a narrower vestibule region likely intensifying the airflow vortex toward the olfactory region and resulting in greater olfactory sensitivity to high mucosal soluble odors.

摘要

有效将环境气味输送到嗅觉受体的鼻气流对于人类嗅觉很重要。然而,鼻腔解剖结构的变化对气流模式和嗅觉功能的影响尚未完全了解。在这项研究中,招募了 22 名健康志愿者,并对他们进行了计算机断层扫描,以对鼻气流模式进行计算模拟。还为所有参与者获得了单侧气味检测阈值 (ODT) 对香芹酮、苯乙醇 (PEA) 和柠檬烯。发现鼻腔解剖结构和空气动力学都存在显著的规范变化。最突出的是在一些但不是所有受试者中形成了一个前背气流涡旋,涡旋的大小与香芹酮的 ODT 显著相关 (r = 0.31, P < 0.05)。涡旋的形成可能是由于前鼻腔形态的原因,涡旋的大小与鼻腔指数(外鼻宽度和高度的比值,r = -0.59, P < 0.001)和鼻腔前庭“凹口”指数(r = 0.76, P < 0.001)变化显著相关。“凹口”是上鼻前庭软骨区域的狭窄。凹口的程度也与 PEA 的 ODT 显著相关 (r = 0.32, P < 0.05) 和香芹酮 (r = 0.33, P < 0.05)。低黏膜可溶性气味的柠檬烯的 ODT 与任何解剖或空气动力学变量都不相关。本研究表明,鼻腔解剖结构和空气动力学可能对正常嗅觉敏感性有重大影响,较大的气流涡旋和较窄的前庭区域可能会使气流涡旋更强烈地朝向嗅觉区域,并导致对高黏膜可溶性气味的嗅觉敏感性增强。