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用于测试药物气雾剂递送的特征性上气管支气管气道模型的开发。

Development of characteristic upper tracheobronchial airway models for testing pharmaceutical aerosol delivery.

作者信息

Walenga Ross L, Tian Geng, Longest P Worth

机构信息

Department of Mechanical and Nuclear Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

出版信息

J Biomech Eng. 2013 Sep;135(9):91010. doi: 10.1115/1.4024630.

Abstract

Characteristic models of the upper conducting airways are needed to evaluate the performance of existing pharmaceutical inhalers and to develop new respiratory drug delivery strategies. Previous studies have focused on the development of characteristic mouth-throat (MT) geometries for orally inhaled products; however, characteristic upper tracheobronchial (TB) geometries are currently not available. In this study, a new characteristic model of the upper TB airways for an average adult male was developed based on an analysis of new and existing anatomical data. Validated computational fluid dynamics (CFD) simulations were used to evaluate the deposition of monodisperse and realistic polydisperse aerosols from multiple inhalers. Comparisons of deposition results between the new model and a simpler geometry were used to identify the effects of different anatomical features on aerosol deposition. The CFD simulations demonstrated a good match to regional pharmaceutical aerosol deposition from in vitro experiments in the same geometry. The deposition of both monodisperse and pharmaceutical aerosols was increased in the new TB geometry as a result of additional anatomical detail on a regional and highly localized basis. Tracheal features including an accurate coronal angle, asymmetry, and curvature produced a skewed laryngeal jet and significantly increased regional deposition. Branch curvature and realistic cross-sections increased deposition in the remainder of the TB model. A hexahedral mesh style was utilized to provide the best solution. In conclusion, a number of physiological features in the upper TB region were shown to influence deposition and should be included in a characteristic model of respiratory drug delivery.

摘要

需要上呼吸道传导气道的特征模型来评估现有药物吸入器的性能,并制定新的呼吸道药物递送策略。先前的研究主要集中在口服吸入产品的口咽(MT)特征几何形状的开发上;然而,目前尚无气管支气管(TB)上部的特征几何形状。在本研究中,基于对新的和现有的解剖学数据的分析,开发了一种针对成年男性的气管支气管上部气道的新特征模型。使用经过验证的计算流体动力学(CFD)模拟来评估来自多个吸入器的单分散和实际多分散气溶胶的沉积情况。通过比较新模型和更简单几何形状之间的沉积结果,来确定不同解剖特征对气溶胶沉积的影响。CFD模拟结果与相同几何形状的体外实验中区域药物气溶胶沉积情况吻合良好。由于在区域和高度局部基础上增加了解剖细节,新的气管支气管几何形状中,单分散和药物气溶胶的沉积均有所增加。包括精确的冠状角、不对称性和曲率在内的气管特征产生了倾斜的喉喷射流,并显著增加了区域沉积。分支曲率和实际横截面增加了气管支气管模型其余部分的沉积。采用六面体网格样式以提供最佳解决方案。总之,气管支气管上部区域的一些生理特征被证明会影响沉积,应纳入呼吸道药物递送的特征模型中。

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