呼吸中断如何影响pMDI气溶输送:在现实的气道中进行CFD研究
Mahsa Jahed1, Janusz Kozinski1, Leila Pakzad2
1Department of Chemical Engineering, Lakehead University, Thunder Bay, Canada.
Pharmaceutical research
|December 10, 2025
概括
在吸入器使用期间不规则的呼吸会显著减少药物到达肺部,增加上呼吸道沉积. 这强调了需要适当的技术来优化治疗效果和患者安全.
科学领域:
- 呼吸系统药物 呼吸系统药物
- 生物医学工程 生物医学工程
- 药理学 药理学是指药理学的学科.
背景情况:
- 压力计量剂量吸入器 (pMDIs) 对于呼吸道药物输送至关重要.
- 吸入技术严重影响pMDI的有效性.
- 现实生活中的呼吸不规则,与理想化的模型不同,对气溶沉积的了解很少.
研究的目的:
- 调查现实生活中的呼吸不规则 (暂停,咳,过早呼气) 对气溶传输和沉积的影响.
- 量化空气流动动力学和粒子沉积模式在呼吸障碍条件下的变化.
主要方法:
- 利用大模拟与离散阶段模型相结合.
- 从口腔到第四代支气管采用了现实的男性气道几何.
- 在持续吸入下对体外实验进行验证的计算预测.
主要成果:
- 呼吸不规则将沉积物转移到上呼吸道,大大减少了肺部沉积物.
- 咳引起了最多的流和最高的上呼吸道沉积 (35.2%在口腔喉).
- 对于深肺输送 (2-5微米) 最佳的粒子在扰乱的流动下丢失或重新定向.
结论:
- 不规则的呼吸模式显著减少深肺沉积,增加上呼吸道损失.
- 在没有足够的间隔的情况下重复吸入pMDI可以加剧上呼吸道沉积和副作用.
- 结果指导医生优化pMDI的使用,以提高治疗疗效和患者安全.
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