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Aerosol generation using an integrated control and dispersion mechanism based on powder flow characteristics.

机译:使用基于粉末流动特性的集成控制和分散机制生成气雾剂。

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摘要

The production of an aerosol by a dry powder inhaler (DPI) requires dispersion of drug particles, a process highly dependent upon the formulation and upon energy provided by the patient's inhalation. It is proposed that measurements of the flow properties of powders can be used to derive signals that will control dispersion and reduce these dependencies in an active DPI. Specific aims addressing this hypothesis include: the measurement of flow properties of powders; the development of an active mechanism of dispersion; the derivation of signals for dispersion; and the development of a dispersion model and control algorithm.;Instrumentation and analysis of vibrating spatula and rotating drum methods of powder characterization was improved, characterized and utilized for powder flow analysis. The vibrating spatula differentiated the flow properties of lactose and maltodextrin excipients and the rotating drum was used to provide a basis for the derivation of signals used to disperse these powders in model albuterol sulfate containing formulations. A vibration membrane for the production of dispersion signals was constructed from a piezoelectric polymer, polyvinyidene difluoride, and mounted in a dispersion tube. In vitro testing of the dispersion properties of the device showed an increase of emitted dose (ED) from 57% and 65% for no signal and a sine wave signal to 81% for the derived signal using the lactose formulation. The fine particle fraction (FPF) increased from 9% to 13% with respect to the nominal dose. The fine particle mass (FPM) increased from 37 mug to 52 mug for a 400 mug nominal dose. For the maltodextrin formulation, the ED and FPF increased from 39% to 95% and 3.6% to 8.1%, respectively. A shear force fluidization model was derived and the flow rate dependence used in the calculation of membership functions in a fuzzy logic dispersion control algorithm. The control algorithm correctly predicted the trend in vibration amplitude needed to produce a uniform FPF.;A novel dispersion mechanism utilized fundamental knowledge of powder flow to improve dispersion in a DPI prototype. The control algorithm is the first proposed for the active control of DPI dispersion.
机译:通过干粉吸入器(DPI)产生气雾剂需要分散药物颗粒,该过程高度依赖于制剂和患者吸入所提供的能量。建议将粉末流动特性的测量结果用于得出可控制分散并降低活性DPI中这些依赖性的信号。解决该假设的具体目标包括:测量粉末的流动性能;发展分散的积极机制;色散信号的推导;改进了振动刮刀和旋转鼓的仪器分析方法,表征了粉末特性,并将其用于粉末流动分析。振动刮刀区分了乳糖和麦芽糊精赋形剂的流动特性,旋转滚筒用于推导用于将这些粉末分散在含硫酸沙丁胺醇的模型配方中的信号的基础。用于产生分散信号的振动膜由压电聚合物,聚偏二氟乙烯构成,并安装在分散管中。装置的分散性能的体外测试表明,使用乳糖制剂,发射剂量(ED)从无信号和正弦波信号的57%和65%增加到81%。相对于标称剂量,细颗粒分数(FPF)从9%增加到13%。对于400杯标称剂量,细颗粒质量(FPM)从37马克杯增加到52马克杯。对于麦芽糊精配方,ED和FPF分别从39%增加到95%,从3.6%增加到8.1%。推导了剪切力流化模型,并在模糊逻辑弥散控制算法中使用了流率依赖性来计算隶属函数。该控制算法正确地预测了产生均匀FPF所需的振动幅度趋势。一种新颖的分散机制利用粉末流动的基本知识来改善DPI原型中的分散。该控制算法是针对DPI色散的主动控制而首次提出的。

著录项

  • 作者

    Crowder, Timothy Morgan.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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