Robinson R D, Reeder J E, Wheeless L L
Department of Pathology, University of Rochester Medical Center, New York 14642.
Cytometry. 1989 Jul;10(4):402-9. doi: 10.1002/cyto.990100407.
The usefulness of multidimensional slit-scan flow cytometry in whole cell measurements is dependent on extracting relevant features from the cellular fluorescence distributions (slit-scan contours). In addition, the extraction of these features must be rapid to allow for real-time data processing during acquisition. This paper describes two algorithms that have been used successfully to count the numbers of local maxima (peaks) and to find nuclear boundaries in a cellular fluorescence distribution. These routines are efficient, use only simple integer arithmetic, and have been implemented on several different microprocessors.
多维狭缝扫描流式细胞术在全细胞测量中的实用性取决于从细胞荧光分布(狭缝扫描轮廓)中提取相关特征。此外,这些特征的提取必须快速,以便在采集过程中进行实时数据处理。本文描述了两种已成功用于计算局部最大值(峰值)数量和在细胞荧光分布中找到核边界的算法。这些程序效率高,仅使用简单的整数运算,并且已在几种不同的微处理器上实现。