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在一种新方法中使用成年人类受试者的解剖学精确三维鼻气道模型来识别和评估鼻内阀。

Use of anatomically-accurate 3-dimensional nasal airway models of adult human subjects in a novel methodology to identify and evaluate the internal nasal valve.

作者信息

Hosseini Sana, Schuman Theodore A, Walenga Ross, Wilkins John V, Babiskin Andrew, Golshahi Laleh

机构信息

Department of Mechanical and Nuclear Engineering, VCU, Richmond, VA, USA.

Department of Otolaryngology- Head and Neck Surgery, VCU Health, Richmond, VA, USA.

出版信息

Comput Biol Med. 2020 Aug;123:103896. doi: 10.1016/j.compbiomed.2020.103896. Epub 2020 Jul 15.

DOI:10.1016/j.compbiomed.2020.103896
PMID:32768043
Abstract

The optimal method for radiographic evaluation of the internal nasal valve (INV) has not been established. The objective of this study was to develop a method to assess the cross-sectional area and the angle of the INV using anatomically-accurate 3D digital nasal airway models. Axial CT images of the paranasal sinuses of twenty adult subjects with healthy nasal airways (50% female and 50% age ≥ 50) were used to create the models. Patients with significant radiographic evidence of sinonasal disease were excluded. A primary cutting plane that passed through the edge of the nasal bone, upper lateral cartilage, and the head of the inferior turbinate was defined in coronal view. This primary coronal cutting plane was then rotated in 5° increments anteriorly while ensuring the anatomic criteria for the INV were still met. The cutting plane resulting in the minimum INV area was identified as the optimal cutting plane and the total cross-sectional area of INV in this plane,198.79 ± 54.57 mm, was significantly less than the areas obtained using the existing methods for radiographic evaluation of the INV. The angle between the optimal cutting plane and nasal dorsum was 75.00 ± 10.26°, and the corresponding INV angle was 10.77 ± 6.02°.

摘要

鼻内瓣膜(INV)影像学评估的最佳方法尚未确立。本研究的目的是开发一种利用解剖结构精确的三维数字化鼻气道模型来评估INV横截面积和角度的方法。使用20名鼻气道健康的成年受试者(50%为女性,50%年龄≥50岁)的鼻窦轴向CT图像来创建模型。排除有鼻窦疾病明显影像学证据的患者。在冠状面视图中定义一个穿过鼻骨边缘、上外侧软骨和下鼻甲头部的主切割平面。然后将这个主冠状切割平面向前以5°增量旋转,同时确保仍满足INV的解剖学标准。导致INV面积最小的切割平面被确定为最佳切割平面,该平面中INV的总横截面积为198.79±54.57平方毫米,显著小于使用现有INV影像学评估方法所获得的面积。最佳切割平面与鼻背之间的角度为75.00±10.26°,相应的INV角度为10.77±6.02°。

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