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Three-dimensional Reconstruction of the Human Upper Airway from Computed Tomography Images

机译:从计算机层析成像图像的人类上气道的三维重建

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An accurate reconstruction of the human upper airway is necessary for modeling and analyzing the transport and deposition of inhaled aerosols. The major object of this paper is to rebuild a three-dimensional geometric model including nasal cavity, pharynx, larynx and trachea, which will be used to research the effect of inhaled aerosols on the human upper airway. This geometric model is an anatomically realistic model which derives from three-dimensional computed tomography images scanning from the whole respiratory tract of a normal adult male with 0.75 mm intervals. With the CT data provided and using image and graphics recognition technologies, we reconstruct an accurate three-dimensional model of the human upper airway (STL file format) which can be directly used by computational fluid dynamics (CFD) simulation of airflow and particle transport and Laser Rapid Prototyping Manufacture (LRPM) of respiratory tract model for the further experimental study.
机译:对于建模和分析吸入气溶胶的运输和沉积是必要的人类上气道的准确重建。本文的主要目的是重建包括鼻腔,咽部,喉和气管的三维几何模型,这些模型将用于研究吸入气溶胶对人类上气道的影响。该几何模型是一种解剖学现实模型,它来自三维计算断层摄影图像扫描从正常成年男性的整个呼吸道,间隔0.75mm。通过提供和使用图像和图形识别技术的CT数据,我们重建了人的上呼吸道(STL文件格式)的准确三维模型,其可以通过计算流体动力学(CFD)模拟气流和粒子运输激光快速原型制造(LRPM)呼吸道模型进行进一步的实验研究。

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