Schmitz Michael, Rothe Thomas, Kienle Alwin
Institut für Lasertechnologien in der Medizin und Meßtechnik, 89081 Ulm, Germany.
Biomed Opt Express. 2011 Sep 1;2(9):2665-78. doi: 10.1364/BOE.2.002665. Epub 2011 Aug 23.
A scattering microscope was developed to investigate single cells and biological microstructures by light scattering measurements. The spectrally resolved part of the setup and its validation are shown in detail. The analysis of light scattered by homogenous polystyrene spheres allows the determination of their diameters using Mie theory. The diameters of 150 single polystyrene spheres were determined by the spectrally resolved scattering microscope. In comparison, the same polystyrene suspension stock was investigated by a collimated transmission setup. Mean diameters and standard deviations of the size distribution were evaluated by both methods with a statistical error of less than 1nm. The systematic errors of both devices are in agreement within the measurement accuracy.
开发了一种散射显微镜,通过光散射测量来研究单细胞和生物微观结构。详细展示了该装置的光谱分辨部分及其验证过程。对均匀聚苯乙烯球体散射光的分析允许使用米氏理论确定其直径。通过光谱分辨散射显微镜测定了150个单个聚苯乙烯球体的直径。相比之下,用准直透射装置研究了相同的聚苯乙烯悬浮液原液。两种方法评估了尺寸分布的平均直径和标准偏差,统计误差小于1nm。两种设备的系统误差在测量精度范围内一致。