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Effect of electrostatic charge and size distributions on respirable aerosol deposition in lung model

机译:静电荷和大小分布对肺部模型中可吸入气溶胶沉积的影响

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Nebulizers, metered dose inhalers (MDIs), and dry powdered inhalers (DPIs) are frequently used to deliver drugs through inhalation drug delivery. These devices generate aerosol in the 0.5-5 /spl mu/m size range that deposits into the various regions of the lung. These inhaled particles may deposit in the various generations of the respiratory system by the complex action of the five deposition mechanisms: interception, impaction, gravitational settling, diffusion, and electrostatic forces. The last deposition mechanism is electrostatic force, which can be significantly important because the deposition of particle fraction in each generation is influenced by the electrostatic charge it carries. Particles of controlled electrostatic charge were generated and deposited in the various stages of the Anderson cascade impactor (ACI) and the effect of particle charge on their deposition in the various stages was studied. It was found that the aerosol with net neutral charge (0 /spl mu/C/g) deposited in the lower stage (fourth stage) of ACI, compared to particles with a net positive or negative charge of 3 /spl mu/C/g that deposited in the upper stage (second stage) of ACI.
机译:雾化器,定量吸入器(MDI)和干粉吸入器(DPI)通常用于通过吸入药物输送来输送药物。这些装置产生的气溶胶大小范围为0.5-5 / spl mu / m,并沉积到肺的各个区域。这些吸入的颗粒可通过五种沉积机制的复杂作用沉积在呼吸系统的各个世代中:拦截,撞击,重力沉降,扩散和静电力。最后一个沉积机理是静电力,这可能非常重要,因为每一代中粒子级分的沉积都受到其携带的静电荷的影响。在Anderson级联撞击器(ACI)的各个阶段中生成并沉积了受控制的静电荷粒子,并研究了粒子电荷对其在各个阶段中沉积的影响。已发现,与净正电荷或负电荷净值为3 / spl mu / C /的颗粒相比,在ACI的较低阶段(第四阶段)沉积的具有净中性电荷(0 / spl mu / C / g)的气溶胶g沉积在ACI的上级(第二级)中。

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