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首页> 外文期刊>Journal of Applied Polymer Science >HIGH-PRECISION MEASUREMENT OF THE SWELLING OF MICROSPHERES
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HIGH-PRECISION MEASUREMENT OF THE SWELLING OF MICROSPHERES

机译:显微膨胀的高精度测量

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摘要

For controlled release of drugs and other uses, the accurate and precise measurement of swelling of polymer microsphere carriers is often crucial. Most currently available techniques were designed to measure high degrees of swelling. We explored the use of digital light microscopy for the high precision measurement of small degrees of swelling of individual microsphere particles. By using a camera to acquire images of microspheres in a sample cell filled with solvent, accurate, precise, measurements of swelling were obtained. The technique has a precision of 0.52% change in the swelling of the volume of a microsphere. We compared this technique with a state-of-the-art gravimetric technique. Comparison of the two techniques revealed that as much as 84% of swelling as measured by the gravimetric method is excess fluid arising from confounding factors such as adsorption and capillary effects. Computer modeling shows that the inaccuracies are due entirely to liquid bridge formation between the microspheres. (C) 1996 John Wiley & Sons, Inc. [References: 8]
机译:对于药物的控释和其他用途,聚合物微球载体溶胀的准确和精确测量通常至关重要。当前最常用的技术旨在测量高度溶胀。我们探索了使用数字光学显微镜对单个微球颗粒的微小溶胀度进行高精度测量的方法。通过使用照相机获取填充有溶剂的样品池中微球的图像,可以获得准确,精确的溶胀测量值。该技术的微球体积溶胀变化精度为0.52%。我们将该技术与最先进的重量分析技术进行了比较。两种技术的比较显示,通过重量分析法测得的膨胀率高达84%是多余的流体,这些流体是由诸如吸附和毛细作用等混杂因素引起的。计算机建模表明,这种误差完全是由于微球之间形成液桥所致。 (C)1996 John Wiley&Sons,Inc. [参考:8]

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