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尿沉渣显微镜检查数字记录的数据处理

Data processing of digital recordings of microscopic examination of urinary sediment.

作者信息

Lakatos J, Bodor T, Zidarics Z, Nagy J

机构信息

Nephrological Center and Second Department of Medicine University Medical School of Pécs, u.1, 7624, Pacsirta, Hungary.

出版信息

Clin Chim Acta. 2000 Jul;297(1-2):225-37. doi: 10.1016/s0009-8981(00)00249-7.

Abstract

The analysis of urine was actually the beginning of laboratory medicine. The important part of the routine urinalysis is the microscopic examination of the urinary sediment [Fogazzi and Cameron, Kidney Int 1996;50(3):1058-1068; Diamondopoulos, Am J Nephrol 1997;17(3-4):222-227; Fogazzi et al., Clin Chem Lab Med 1998;36(12):919-924]. The microscopic examination of the urine is the least standardised and most time-consuming part of the routine urinalysis, even though it is now known that careful analysis of the sediment components can provide early information concerning the anatomic integrity of the kidney and the existence and extent of recent damage. Our objective was to develop a computerised image processing system and an interactive software package for the backing of clinicians, medical research and medical students. The system consists of: (a) a CCD camera attached to a microscope. (b) Digital processing device. (c) Computer equipped with special video card. (d) Printer. (e) Software. Image analysis begins with a digital capturing of the image as data. The image is detected with 256 gray levels and displayed with a resolution of 512x512 pixels. A pixel is an abbreviation for picture elements and represents the dots on a screen. Once the image is acquired in digital format, the data can be manipulated for changes in the display image or for statistical purposes. The digitised microscope images are a very important part of renal diagnosis and of teaching nephrology.

摘要

尿液分析实际上是检验医学的开端。常规尿液分析的重要部分是对尿沉渣进行显微镜检查[福加齐和卡梅伦,《肾脏病国际》1996年;50(3):1058 - 1068;戴蒙德奥普洛斯,《美国肾脏病杂志》1997年;17(3 - 4):222 - 227;福加齐等人,《临床化学与实验室医学》1998年;36(12):919 - 924]。尿液的显微镜检查是常规尿液分析中标准化程度最低且最耗时的部分,尽管现在已知仔细分析沉渣成分可提供有关肾脏解剖完整性以及近期损伤的存在和程度的早期信息。我们的目标是开发一个计算机图像处理系统和一个交互式软件包,以支持临床医生、医学研究人员和医学生。该系统由以下部分组成:(a) 连接到显微镜的电荷耦合器件(CCD)相机。(b) 数字处理设备。(c) 配备特殊视频卡的计算机。(d) 打印机。(e) 软件。图像分析始于将图像作为数据进行数字采集。图像以256级灰度进行检测,并以512×512像素的分辨率显示。像素是图像元素的缩写,代表屏幕上的点。一旦图像以数字格式获取,数据就可以进行处理,以改变显示图像或用于统计目的。数字化的显微镜图像是肾脏诊断和肾脏病教学的非常重要的一部分。

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