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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Development of a realistic human respiratory tract cast representing physiological thermal conditions
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Development of a realistic human respiratory tract cast representing physiological thermal conditions

机译:开发一种代表生理热条件的现实人类呼吸道铸造

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摘要

Toxicological assessment of inhaled aerosols and their effects on respiratory tissue cells requires accurate measurements of particle delivery, properties, evolution, and deposition in the human respiratory tract. These measurements are affected by both anatomical features and physiological factors, such as thermal conditions in the respiratory system. We constructed a segmented cast model, based on a realistic geometry of the human respiratory tract, equipped with features to control the temperature of the air flow. We then evaluated the thermal equilibrium of the air flow through the cast using both experimental measurements and computational fluid dynamics modeling. Uniform temperature distribution in the cast shell was achieved using parallel connection of the cast segments to a thermal bath by flow splitter. Air temperature inside the cast was shown to require <1min to equilibrate with the temperature of the cast during internal circulation of hot water. Air flow temperature was shown to equilibrate with the cast temperature in the mouth-throat region, and a uniform temperature distribution was achieved in the other segments, resembling the thermal conditions of respiratory flow in the human lung. We showed that the cast successfully represents the physiological thermal conditions of the human respiratory system.
机译:吸入气溶胶的毒理学评估及其对呼吸系统组织细胞的影响需要准确测量人类呼吸道中的颗粒递送,性质,进化和沉积。这些测量受到解剖学特征和生理因素的影响,例如呼吸系统中的热条件。我们构建了一款分段的铸模,基于人类呼吸道的现实几何形状,配备有控制空气流量的温度。然后,我们通过使用实验测量和计算流体动力学建模来评估通过铸件的空气流的热平衡。通过流量分离器使用将铸段的并联连接到热浴的平行连接来实现浇铸壳中的均匀温度分布。显示出铸件内的空气温度要求<1min以与热水内部循环期间铸造的温度平衡。显示空气流温度与口喉区域中的铸造温度平衡,在其他区段中实现均匀的温度分布,类似于人肺中呼吸流动的热条件。我们表明,铸件成功地代表了人类呼吸系统的生理热条件。

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