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细胞盘:一种基于细胞排列新原理的细胞计数器。

The cytodisk: a cytometer based upon a new principle of cell alignment.

作者信息

de Grooth B G, Geerken T H, Greve J

出版信息

Cytometry. 1985 May;6(3):226-33. doi: 10.1002/cyto.990060309.

Abstract

A new method is described for one-dimensional alignment of small particles such as biological cells. A drop of the particle suspension is spread out on a flat disk or plate equipped with V-shaped grooves such as are present on a gramophone disk. After drying, the particles are located on the bottom of the grooves and are thus aligned in a one-dimensional array. The new alignment procedure is demonstrated with a suspension of fluorescent polystyrene microspheres (diameter 3.8 microns) and a suspension of the unicellular algae chlorella vulgaris (diameter about 3 microns). It appears that the alignment of cells and spheres is very good. When using microspheres, more than 95% of the particles in the grooves are located within +/- 2 microns of the centre line of the groove. Based upon this cell-alignment principle, a new cytometer, named the cytodisk, is proposed. The proposed system has a number of advantages over the flow cytometer, among which is the unique ability of relocating a previously measured cell for further measurement or visual examination. A prototype of a cytodisk, developed for initial test measurements, was built in our laboratory. The apparatus, constructed from a record player and ordinary long-playing records, uses a simple mechanical tracking system and a single optical fiber for fluorescence excitation and detection. With this apparatus it is demonstrated that a cytodisk can indeed perform quite well: A histogram of fluorescing microspheres could be measured with a coefficient of variation of 4.1%. The performance of this prototype is limited by the quality of the mechanical tracking system and the optical system used.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本文描述了一种用于对生物细胞等小颗粒进行一维排列的新方法。将一滴颗粒悬浮液铺展在配备有V形凹槽的平盘或平板上,如留声机唱片上的凹槽。干燥后,颗粒位于凹槽底部,从而排列成一维阵列。用荧光聚苯乙烯微球(直径3.8微米)悬浮液和普通小球藻(直径约3微米)悬浮液演示了这种新的排列程序。细胞和微球的排列似乎非常好。使用微球时,凹槽中超过95%的颗粒位于凹槽中心线±2微米范围内。基于这种细胞排列原理,提出了一种名为细胞盘的新型细胞计数器。与流式细胞仪相比,该系统具有许多优点,其中包括能够重新定位先前测量的细胞以进行进一步测量或视觉检查的独特能力。我们实验室制造了一个用于初始测试测量的细胞盘原型。该装置由一台唱片机和普通的密纹唱片构成,使用简单的机械跟踪系统和单根光纤进行荧光激发和检测。使用该装置证明细胞盘确实能表现得相当出色:可以测量出荧光微球的直方图,变异系数为4.1%。该原型的性能受所用机械跟踪系统和光学系统质量的限制。

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