Liu Y, Johnson M R, Matida E A, Kherani S, Marsan J
Department of Mechanical and Aerospace Engineering, Carleton University, Ottawa, Ontario, Canada.
J Appl Physiol (1985). 2009 Mar;106(3):784-95. doi: 10.1152/japplphysiol.90376.2008. Epub 2009 Jan 8.
A novel, standardized geometry of the human nasal cavity was created by aligning and processing 30 sets of computed tomography (CT) scans of nasal airways of healthy subjects. Digital three-dimensional (3-D) geometries of the 60 single human nasal cavities (30 right and 30 mirrored left cavities) were generated from the CT scans and measurements of physical parameters of each single nasal cavity were performed. A methodology was developed to scale, orient, and align the nasal geometries, after which 2-D digital coronal cross-sectional slices were generated. With the use of an innovative image processing algorithm, median cross-sectional geometries were created to match median physical parameters while retaining the unique geometric features of the human nasal cavity. From these idealized 2-D images, an original 3-D standardized median human nasal cavity was created. This new standardized geometry was compared against the original geometries of all subjects as well as limited existing data from the literature. The new model has potential for use as a geometric standard in future experimental and numerical studies of deposition of inhaled aerosols, as well as for use as a reference during diagnosis of unhealthy patients. The specific procedure developed could also be applied to build standard nasal geometries for different identifiable groups within the larger population.
通过对齐和处理30组健康受试者鼻腔气道的计算机断层扫描(CT)图像,创建了一种新颖、标准化的人体鼻腔几何模型。从CT扫描生成了60个单个人类鼻腔的数字三维(3-D)几何模型(30个右侧鼻腔和30个镜像左侧鼻腔),并对每个单鼻腔的物理参数进行了测量。开发了一种方法来缩放、定向和对齐鼻腔几何模型,之后生成了二维数字冠状横截面切片。使用一种创新的图像处理算法,创建了中值横截面几何模型,以匹配中值物理参数,同时保留人类鼻腔的独特几何特征。从这些理想化的二维图像中,创建了一个原始的三维标准化中值人体鼻腔。将这种新的标准化几何模型与所有受试者的原始几何模型以及文献中有限的现有数据进行了比较。这个新模型有潜力在未来吸入气溶胶沉积的实验和数值研究中用作几何标准,也可在不健康患者的诊断过程中用作参考。所开发的具体程序也可应用于为更大人群中的不同可识别群体构建标准鼻腔几何模型。