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首页> 外文期刊>European journal of pharmaceutical sciences >Factors affecting aerosol performance during nebulization with jet and ultrasonic nebulizers.
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Factors affecting aerosol performance during nebulization with jet and ultrasonic nebulizers.

机译:使用喷射和超声雾化器雾化过程中影响气溶胶性能的因素。

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Nebulization of aqueous solutions is a convenient delivery system to deliver drugs to the lungs because it can produce droplets small enough to reach the alveolar region. However, the droplet size might be affected by the changes in the temperature and the concentration of the nebulizing solution in the reservoir during nebulization. In this study, the changes in the droplet size over the nebulization time using a PariBoy air-jet and a Multisonic ultrasonic nebulizer have been studied. The findings were related to changes in the temperature, concentration, surface tension, viscosity and saturated vapour pressure of the nebulizing solution. By using the jet nebulizer, an increase in the droplet size followed by a decrease has been observed. This observation could be attributed to the approx. 7 degrees C reduction of the temperature during the first 2 min in the jet nebulizer reservoir which increased the viscosity of the nebulizing solution. After this initial period of time, the increasing drug concentration induced a reduction of the surface tension and, consequently, a decrease in the droplet size. However, with the ultrasonic nebulizer a temperature increase of approx. 20 degrees C during the first 6 min in the nebulizing solution was observed leading to a decrease in droplet size, viscosity and surface tension and an increasing saturated vapour pressure. This again led to smaller average droplet sizes.
机译:水溶液雾化是将药物递送到肺部的便捷递送系统,因为它可以产生足够小的液滴以到达肺泡区域。但是,在雾化过程中,液滴的大小可能会受到温度变化以及储液罐中雾化溶液浓度的影响。在这项研究中,已经研究了使用PariBoy喷气和Multisonic超声雾化器在雾化时间内液滴尺寸的变化。这些发现与雾化溶液的温度,浓度,表面张力,粘度和饱和蒸气压的变化有关。通过使用喷射喷雾器,已经观察到液滴尺寸的增加随后减小。该观察结果可归因于约。喷射雾化器储存器中的前2分钟内温度降低7摄氏度,这增加了雾化溶液的粘度。在该初始时间段之后,药物浓度的增加引起表面张力的减小,并因此导致液滴尺寸的减小。但是,使用超声波雾化器时,温度大约升高。在喷雾溶液的前6分钟内观察到20摄氏度,导致液滴尺寸,粘度和表面张力降低,饱和蒸气压增加。这再次导致较小的平均液滴尺寸。

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