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哺乳动物细胞的激光流式细胞术光散射及荧光脉冲宽度和脉冲上升时间测定

Laser flow cytometric light scatter and fluorescence pulse width and pulse rise-time sizing of mammalian cells.

作者信息

Leary J F, Todd P, Wood J C, Jett J H

出版信息

J Histochem Cytochem. 1979 Jan;27(1):315-20. doi: 10.1177/27.1.374594.

Abstract

In laser flow cytometry, an increasingly popular technique of analytical cytology, quantitative measurements of interest include cell and nuclear diameters. Electronic circuitry for a new cell sizing technique has been developed which measured the time that signal pulses from either fluorescence or light scatter sensors exceed a preset constant fraction of the peak signal amplitude (pulse width) or the time that it takes a signal to rise between constant fractions of the peak signal amplitude on the rising side of the pulse (pulse rise-time). These pulse width or pulse rise-time measurements were related to cell or nuclear diameters and were used in combination to determine nuclear size to cell size ratios. This method of sizing was found to be independent of fluorescent or light-absorbing stain intensity, linearly related to cell or nuclear diameter, and capable of resolving small diameter differences.

摘要

在激光流式细胞术(一种日益流行的分析细胞学技术)中,感兴趣的定量测量包括细胞和细胞核直径。已开发出一种用于新细胞大小测量技术的电子电路,该电路测量来自荧光或光散射传感器的信号脉冲超过峰值信号幅度的预设恒定分数的时间(脉冲宽度),或者测量信号在脉冲上升侧从峰值信号幅度的恒定分数之间上升所需的时间(脉冲上升时间)。这些脉冲宽度或脉冲上升时间测量值与细胞或细胞核直径相关,并结合使用以确定核大小与细胞大小的比率。发现这种大小测量方法与荧光或吸光染色强度无关,与细胞或细胞核直径呈线性相关,并且能够分辨小的直径差异。

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