Department of Otorhinolaryngology, University of North Carolina, Chapel Hill, NC, USA.
Rhinology. 2012 Sep;50(3):311-8. doi: 10.4193/Rhino12.053.
This study investigates how deviated nasal septum affects the quantity and distribution of spray particles, and examines the effects of inspiratory airflow and head position on particle transport.
Deposition of spray particles was analysed using a three-dimensional computational fluid dynamics model created from a computed tomography scan of a human nose with leftward septal deviation and a right inferior turbinate hypertrophy. Five simulations were conducted using FluentTM software, with particle sizes ranging from 20-110 μm, a spray speed of 3 m/s, plume angle of 68(deg), and with steady state inspiratory airflow either present (15.7 L/min) or absent at varying head positions.
With inspiratory airflow present, posterior deposition on the obstructed side was approximately four times less than the contralateral side, regardless of head position, and was statistically significant. When airflow was absent, predicted deposition beyond the nasal valve on the left and right sides were between 16% and 69% lower and positively influenced by a dependent head position.
Simulations predicted that septal deviation significantly diminished drug delivery on the obstructed side. Furthermore, increased particle penetration was associated with presence of nasal airflow. Head position is an important factor in particle deposition patterns when inspiratory airflow is absent.
本研究旨在探讨鼻中隔偏曲如何影响喷雾颗粒的数量和分布,并研究吸气气流和头部位置对颗粒传输的影响。
使用 FluentTM 软件进行了五项模拟,使用的是一个三维计算流体动力学模型,该模型基于一位鼻中隔左偏和右侧下鼻甲肥大的人类鼻 CT 扫描创建。模拟使用的颗粒大小为 20-110 μm,喷雾速度为 3 m/s,射流角度为 68(deg),吸气气流为稳态,存在(15.7 L/min)或不存在,头部位置不同。
存在吸气气流时,无论头部位置如何,阻塞侧的后向沉积量约为对侧的四分之一,差异具有统计学意义。当气流不存在时,预测在鼻阀两侧的左侧和右侧的沉积量比存在气流时分别低 16%至 69%,且与头部的依赖位置呈正相关。
模拟预测鼻中隔偏曲显著减少了阻塞侧的药物输送。此外,随着鼻气流的存在,颗粒穿透增加。当吸气气流不存在时,头部位置是影响颗粒沉积模式的重要因素。