Erhardt R, Reinhardt E R, Schlipf W, Bloss W H
Anal Quant Cytol. 1980 Mar-Apr;2(1):25-40.
Cell location, segmentation and feature extraction of cell images are principal tasks of a high-resolution system for automated cytology. To perform these tasks with high speed, image processing algorithms and the architecture of a processor have to be optimized mutually. This has led to the development of a fast system for the evaluation of cytologic samples based on an optimized TV microscope, a host minicomputer with different peripheral array processors and digital image storages. The processors are optimized in speed for two-dimensional local operations to investigate neighborhood relations and morphology in cell images. Two-dimensional transformations of TV images (288 x 512 x 8 bit) can be carried out within 20 to 200 msec. The processors are able to realize linear filter functions (correlation, convolution) as well as nonlinear functions (median filtering). A set of measurements like area, circumference and connectivity can be derived parallely from one image in 20 msec. The system performs efficient and fast detection and segmentation of cells scanned in one TV frame within one second as well as the extraction of a large number of morphologic features within a few seconds. Based on these procedures, high-resolution analysis of several thousand cells of a sample within one minute will be possible.
细胞图像的细胞定位、分割和特征提取是高分辨率自动细胞学系统的主要任务。为了高速执行这些任务,图像处理算法和处理器架构必须相互优化。这促使人们基于优化的电视显微镜、带有不同外围阵列处理器和数字图像存储设备的主机小型计算机,开发出一种用于评估细胞学样本的快速系统。这些处理器针对二维局部操作进行了速度优化,以研究细胞图像中的邻域关系和形态。电视图像(288×512×8位)的二维变换可在20到200毫秒内完成。这些处理器能够实现线性滤波函数(相关性、卷积)以及非线性函数(中值滤波)。在20毫秒内可以从一幅图像并行得出一组测量值,如面积、周长和连通性。该系统能够在一秒内高效、快速地检测和分割在一个电视帧中扫描的细胞,并在几秒钟内提取大量形态特征。基于这些程序,在一分钟内对样本中的数千个细胞进行高分辨率分析将成为可能。