[超声气雾剂的物理基础和应用治疗范围(作者简介)]。

H Stellpflug, W Kox, G Vietor, E Kubie
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引用次数: 0

摘要

水溶液的气溶胶从发育到肺泡的大小仍在变化;因此,只能对粒子谱的可能大小作出结论。挥发、冷凝、混凝和沉降是重要的干扰因素。要描述气溶胶的特征,必须知道气溶胶的体积、雾状物质的数量和相对大小的分布。描述了一种测量尺寸分布的方法——在螺旋离心机中沉积放射性气溶胶,并比较了两种超声波雾化器的气溶胶。超声雾化器气溶胶由于其物理性质,在支气管肺功能损害的预防和治疗中起着重要作用。
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[Physical basis and therapeutic range of application of ultrasonic aerosols (author's transl)].

An aerosol of an aqueous solution still changes its size from development up to alveoli; therefore only conclusions can be made about possible sizes of particle spectrum. Volatilisation, condensation, coagulation and sedimentation are the important interfering factors. To characterize an aerosol one should know the aerosolvolume, the quantity of nebulised substance and the relative size distribution. A method for measurement of size distribution -- a radioactive aerosol was deposited in a spiral centrifuge -- is described and the aerosol of two ultrasonic nebulizers were compared. Because of their physical properties aerosols of ultrasonic nebulizers play a main part in prophylaxis and therapy of functional lesion of bronchopulmonary affections.

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