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External characteristics of unsteady spray atomization from a nasal spray device

机译:鼻喷雾器不稳定喷雾雾化的外部特征

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The nasal route presents an enormous opportunity to exploit the highly vascularized respiratory airway for systemic drug delivery to provide more rapid onset of therapy and reduced drug degradation compared with conventional oral routes. The dynamics of atomization at low injection pressure is less known as typical spray atomization studies have focused on industrial applications such as fuel injection that are performed at much higher pressure. An experimental test station was designed in house and an alternative method to characterize the external spray is presented. This involved the use of high-speed camera to capture the temporal development of the spray as it is atomized through actuation of the spray device. An image-processing technique based on edge detection was developed to automate processing through the large number of images captured. The results showed that there are three main phases of spray development (prestable, stable, and poststable) that can be correlated by examining the spray width. A comparison with a human nasal cavity is made to put into perspective the dimensions and geometry that the spray atomization produces. This study aimed to extend the current existing set of data to contribute toward a better understanding in nasal spray drug delivery.
机译:与常规口服途径相比,鼻腔途径为利用高度血管化的呼吸道进行全身性药物输送提供了巨大的机会,以提供更快的治疗起效和减少的药物降解。在低喷射压力下雾化的动力学是鲜为人知的,因为典型的喷雾雾化研究集中于工业应用,例如在高得多的压力下进行的燃料喷射。在室内设计了一个实验测试站,并提出了表征外部喷雾的替代方法。这涉及使用高速相机来捕获喷雾的暂时发展,因为喷雾是通过驱动喷雾装置而雾化的。开发了基于边缘检测的图像处理技术,以通过捕获大量图像来自动进行处理。结果表明,通过检查喷雾宽度可以将喷雾发展的三个主要阶段(可稳定,稳定和可后稳定)关联起来。与人的鼻腔进行了比较,以透视喷雾雾化产生的尺寸和几何形状。这项研究旨在扩展当前的现有数据集,以更好地了解鼻喷雾药物的输送。

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