基于ct扫描的口腔-咽喉模型中的气溶胶颗粒运输和沉积

S. Saha, M. Islam, M. Rahimi-Gorji, M. Molla
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引用次数: 29

摘要

准确了解真实口喉模型中气溶胶颗粒的运输和沉积(TD)对呼吸道健康风险评估和气溶胶药物有效递送到肺部目标位置具有重要意义。广泛的研究已经为理想和非理想的胸外气道开发了颗粒TD框架。然而,所有现有的计算机和实验模型都报告了大量的气溶胶颗粒沉积在胸外气道上,现有的药物输送装置只能将12%的气溶胶药物输送到肺部的目标位置。本研究旨在通过建立一种基于ct扫描的口腔-喉咙复制品的真实粒子传输模型来提高靶向药物递送的效率。一个3-D逼真的口腔-喉咙模型是由一个健康的成人演员的ct扫描图像开发的。为复制模型生成了高质量的计算单元,并进行了适当的网格细化测试。采用ANSYS Fluent(19.1)求解器进行粒子TD计算。使用Tecplot和MATLAB软件进行后处理。数值结果表明,在口-喉模型中,呼吸方式和颗粒直径对整体颗粒TD有影响。数值结果还描述了口腔-喉咙模型的不同沉积热点,这将最终帮助设计更好的给药装置。结果表明,在15 lpm的流速下,10 μm直径的颗粒只有13.67%沉积在口-喉模型中,这表明剩余的颗粒将向外气道移动。目前的结果以及更多的病例研究将发展对实际颗粒沉积在胸外气道的理解。准确了解真实口喉模型中气溶胶颗粒的运输和沉积(TD)对呼吸道健康风险评估和气溶胶药物有效递送到肺部目标位置具有重要意义。广泛的研究已经为理想和非理想的胸外气道开发了颗粒TD框架。然而,所有现有的计算机和实验模型都报告了大量的气溶胶颗粒沉积在胸外气道上,现有的药物输送装置只能将12%的气溶胶药物输送到肺部的目标位置。本研究旨在通过建立一种基于ct扫描的口腔-喉咙复制品的真实粒子传输模型来提高靶向药物递送的效率。一个3-D逼真的口腔-喉咙模型是由一个健康的成人演员的ct扫描图像开发的。为复制模型生成了高质量的计算单元,并对网格进行了适当的修改。
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Aerosol particle transport and deposition in a CT-scan based mouth-throat model
A precise understanding of the aerosol particle transport and deposition (TD) in the realistic mouth-throat model is important for the respiratory health risk assessment and effective delivery of the aerosol medicine to the targeted positions of the lung. A wide range of studies have developed the particle TD framework for both idealized and non-idealized extra-thoracic airways. However, all of the existing in silico and experimental model reports a significant amount of aerosol particles are deposit at the extra-thoracic airways and the existing drug delivery device can deliver only 12 percent of the aerosol drug to the targeted position of the lung. This study aims to increase the efficiency of the targeted drug delivery by developing a realistic particle transport model for CT-Scan based mouth-throat replica. A 3-D realistic mouth-throat model is developed from the CT-Scan DiCom images of a healthy adult cast. High-Quality computational cells are generated for the replica model and the proper grid refinement test has been performed. ANSYS Fluent (19.1) solver is used for the particle TD computation. Tecplot and MATLAB software are used for the post-processing purpose. The numerical results report that the breathing pattern and particle diameter influences the overall particle TD in the mouth-throat model. The numerical results also depict different deposition hot spots for the mouth-throat model, which will eventually help to design a better drug delivery device. The numerical results reported that only 13.67 percent of the 10-μm diameter particles are deposited at the mouth-throat model at 15 lpm flow rate and which indicate that the remaining particles will move to the beyond airways. The present results along with more case studies will develop the understanding of the realistic particle deposition in the extrathoracic airways.A precise understanding of the aerosol particle transport and deposition (TD) in the realistic mouth-throat model is important for the respiratory health risk assessment and effective delivery of the aerosol medicine to the targeted positions of the lung. A wide range of studies have developed the particle TD framework for both idealized and non-idealized extra-thoracic airways. However, all of the existing in silico and experimental model reports a significant amount of aerosol particles are deposit at the extra-thoracic airways and the existing drug delivery device can deliver only 12 percent of the aerosol drug to the targeted position of the lung. This study aims to increase the efficiency of the targeted drug delivery by developing a realistic particle transport model for CT-Scan based mouth-throat replica. A 3-D realistic mouth-throat model is developed from the CT-Scan DiCom images of a healthy adult cast. High-Quality computational cells are generated for the replica model and the proper grid refi...
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