Marchevsky A M, Gil J, Jeanty H
Hum Pathol. 1987 Apr;18(4):320-31. doi: 10.1016/s0046-8177(87)80160-0.
This review is concerned with the current applications of interactive computerized morphometry for diagnostic applications. "Interactive" differs from fully automatic procedures in that the essential function of cell recognition is performed by a trained observer, assisted by a computerized instrument that performs all desirable measurement and processing tasks. This article describes the instrumental needs (video systems, computer, and specialized hardware) and interactive peripherals, in particular, high-resolution touch screens for most common and currently useful video analysis tasks. The authors describe a number of general instrumental procedures with widespread applications (point counting, tracing of contours, graphic standards of size and length, shape analysis, automatic edge detection). Diagnostic procedures are based on the generation of multiple data followed by either multivariate statistical analysis that allows diagnosis of individual cases or hierarchical algorithms. The best current application is the objective study of controversial or difficult cases; there is a possibility that in the future interactive computerized morphometry may become useful for the mass screening of cytologic specimens.
本综述关注交互式计算机形态测量学在诊断应用中的当前应用。“交互式”与全自动程序的不同之处在于,细胞识别的基本功能由经过培训的观察者执行,由执行所有所需测量和处理任务的计算机化仪器辅助。本文介绍了仪器需求(视频系统、计算机和专用硬件)以及交互式外围设备,特别是用于最常见和当前有用的视频分析任务的高分辨率触摸屏。作者描述了一些具有广泛应用的一般仪器程序(点计数、轮廓追踪、尺寸和长度的图形标准、形状分析、自动边缘检测)。诊断程序基于生成多个数据,然后进行多变量统计分析以诊断个别病例或分层算法。当前最佳应用是对有争议或困难病例进行客观研究;未来交互式计算机形态测量学有可能用于细胞学标本的大规模筛查。