College of Pharmacy, University of Iowa, 115 S. Grand Ave., Iowa City, Iowa, 52242, USA.
Novartis Pharmaceuticals, Shanghai, China.
AAPS PharmSciTech. 2018 Oct;19(7):2767-2777. doi: 10.1208/s12249-018-1031-2. Epub 2018 Jun 11.
A mathematical approach was developed to estimate spray deposition patterns in the nasal cavity based on the geometric relationships between the emitted spray plume and the anatomical dimensions of the nasal valve region of the nasal cavity. Spray plumes were assumed to be spherical cones and the nasal valve region was approximated as an ellipse. The effect of spray plume angle (15-85°) on the fraction of the spray able to pass through the nasal valve (deposition fraction) was tested for a variety of nasal valve (ellipse) shapes and cross-sectional areas based on measured dimensions from pediatric and adult nasal cavities. The effect of the distances between the tip of the nasal spray device and the nasal valve (0.2-1.9 cm) on the deposition fraction was also tested. Simulation results show that (1) decreasing spray plume angles resulted in higher deposition fractions, (2) deposition fraction was inversely proportional to the spray distance and the nasal valve (ellipse) major/minor axis ratio, and (3) for fixed major/minor axis ratios, improved deposition occurred with larger nasal valve cross-sectional areas. For a typical adult nasal valve, plume angles of less than 40° emitted from a distance of 1 cm resulted depositions greater than 90% within the main nasal cavity, whereas for a 12-year-old child, only the most narrow plume angles (< 20°) administered resulted in significant deposition beyond the nasal valve.
我们提出了一种基于鼻腔中阀区解剖学尺寸与射流喷雾几何关系的数学方法,以预测鼻腔内的喷雾沉积模式。假设喷雾射流为球形圆锥,中阀区近似为椭圆形。我们针对不同的中阀区(椭圆形)形状和截面积,基于儿童和成人鼻腔的实测尺寸,测试了喷雾射流角度(15-85°)对穿过中阀区的喷雾(沉积分数)比例的影响。我们还测试了喷雾器尖端与中阀区之间的距离(0.2-1.9 cm)对沉积分数的影响。模拟结果表明:(1)降低喷雾射流角度会导致更高的沉积分数;(2)沉积分数与喷雾距离和中阀区(椭圆形)长半轴/短半轴比值成反比;(3)对于固定的长半轴/短半轴比值,随着中阀区截面积的增大,沉积效果会得到改善。对于典型的成人中阀区,当距离为 1 cm 时,喷雾射流角度小于 40°,则大部分(>90%)喷雾会沉积在主鼻腔内;而对于 12 岁儿童,只有最窄的射流角度(<20°)才能在中阀区以外产生显著的沉积。