椭圆度
鼻喷雾剂
喷雾特性
沉积(地质)
分布(数学)
羽流
化学
材料科学
几何学
生物医学工程
喷嘴
数学
鼻腔给药
医学
物理
免疫学
地质学
热力学
古生物学
数学分析
大地测量学
沉积物
喷嘴
作者
Arun V. Kolanjiyil,Ross Walenga,Andrew Babiskin,Laleh Golshahi,Michael Hindle,P. Worth Longest
标识
DOI:10.1016/j.ijpharm.2023.122718
摘要
Nasal sprays are typically characterized using in vitro spray metrics such as spray cone angle and droplet size distribution. It is currently not clear how these in vitro metrics correlate with regional nasal deposition, and these relationships could help explain the impact of product differences. In this study, the effects of changes in spray cone angle, spray velocity, spray ovality and droplet size distribution on regional nasal deposition were analyzed using a validated computational fluid dynamics model in recently developed adult characteristic nasal airway anatomies. The impact of the spray on the surrounding air phase was included. Results indicated that changes in spray cone angle largely influenced the nasal posterior deposition (PD) of the drug. Changes in the plume ovality and characteristic droplet size moderately influenced PD, but the results were dependent on the insertion conditions and nasal geometry. Changes in spray velocity and uniformity constant of the droplet size distribution had only minimal influence on PD. The rank order of metrics having the greatest to least impact on PD was cone angle ≫ plume ovality ≫ characteristic droplet size ≫ velocity ≫ size distribution uniformity constant. Overall, results from this study established quantitative relationships for predicting expected changes in PD.
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