Bommireddi A, Li L C, Stephens D, Robinson D, Ginsburg E
Hospital Products Division, Abbott Laboratory, Abbott Park, IL 60064-3500, USA.
Drug Dev Ind Pharm. 1998 Nov;24(11):1089-93. doi: 10.3109/03639049809089954.
Microscopy is a useful and direct method for measuring the particle size of a suspension because, in addition to the particle size and size distribution, it provides visual detection of the shape and state of aggregation of the particles in the suspension. However, this method suffers from the shortcomings of being tedious and time consuming. In this study, a light-scattering particle size analyzer was used to determine the particle size and size distribution of a flocculated suspension. The sonication of the sample prior to and during measurement was found to be critical in ensuring that data are representative of the size distribution of the primary particles of the suspension. The light-scattering results were further confirmed by data generated using a polarized light microscope equipped with an image analyzer.
显微镜检查法是一种用于测量悬浮液颗粒大小的实用且直接的方法,因为除了颗粒大小和尺寸分布外,它还能直观检测悬浮液中颗粒的形状和聚集状态。然而,该方法存在操作繁琐和耗时的缺点。在本研究中,使用了一种光散射粒度分析仪来测定絮凝悬浮液的颗粒大小和尺寸分布。结果发现,在测量之前和测量过程中对样品进行超声处理对于确保数据代表悬浮液一次颗粒的尺寸分布至关重要。使用配备图像分析仪的偏光显微镜生成的数据进一步证实了光散射结果。