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一些影响喷射雾化器系统效率的因素。

Some factors influencing the efficiency of a jet nebuliser system.

作者信息

Smye S W, Shaw A, Norwood H M, Littlewood J M

机构信息

Department of Medical Physics, St James's University Hospital, Leeds, UK.

出版信息

Clin Phys Physiol Meas. 1990 May;11(2):167-75. doi: 10.1088/0143-0815/11/2/007.

DOI:10.1088/0143-0815/11/2/007
PMID:2364642
Abstract

The operation of a commercially available nebuliser system (Medic-Aid Ltd) is reviewed and the efficiency with which it produces an aerosol assessed. Defining the efficiency of nebulisation E as the fraction of the original mass of solution released as an aerosol it is found that the internal surface area, mass of solution used, the surface tension of the solution and the angle of tilt are important factors in determining E. Reducing the internal surface area of the nebuliser by means of Perspex inserts significantly increases E for 3 g of water from 49% for the unmodified system to 67% for the modified nebuliser (P less than 0.01). E increases with the mass of solution used but only exceeds 60% when 4.5 g water are used. Decreasing the surface tension of the solution from 7.2 x 10(-3) N m-1 (water) to 3.7 x 10(-3) N m-1 and 3.1 x 10(-3) N m-1 (using two different concentrations of a detergent in water) significantly increases E for 3 g solution from 49% to 65% and 69% respectively (P less than 0.05). Operating the nebuliser at a tilt also increases E. The measurements emphasise the importance of reducing the internal surface area of this type of nebuliser, using an adequate volume of drug solution (at least 4 ml is suggested) and operating the nebuliser at an angle to the vertical (20 degrees suggested) in order to maximise E. The surface tension of the drug solution is a further important determinant of E.

摘要

对一款市售雾化器系统(Medic - Aid有限公司)的运行情况进行了评估,并测定了其产生气雾剂的效率。将雾化效率E定义为以气雾剂形式释放的溶液原始质量的占比,研究发现雾化器的内表面积、所用溶液的质量、溶液的表面张力以及倾斜角度都是决定E的重要因素。通过使用有机玻璃插件来减小雾化器的内表面积,可显著提高3克水的E值,对于未改良的系统,E值为49%,而改良后的雾化器E值为67%(P小于0.01)。E值随所用溶液质量的增加而增大,但只有当使用4.5克水时E值才会超过60%。将溶液的表面张力从7.2×10⁻³牛顿/米(水)降至3.7×10⁻³牛顿/米和3.1×10⁻³牛顿/米(在水中使用两种不同浓度的洗涤剂),可使3克溶液的E值分别从49%显著提高到65%和69%(P小于0.05)。将雾化器倾斜操作也会提高E值。这些测量结果强调了为使E值最大化而减小此类雾化器内表面积、使用足够体积的药物溶液(建议至少4毫升)以及将雾化器与垂直方向呈一定角度(建议20度)操作的重要性。药物溶液的表面张力是E的另一个重要决定因素。

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