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自动全玻片数字化:一种可供多位病理学家同时查看的媒介。

Automated complete slide digitization: a medium for simultaneous viewing by multiple pathologists.

作者信息

Leong F J, McGee J O

机构信息

University of Oxford, Nuffield Department of Clinical Laboratory Sciences, Level 4 Academic Block, John Radcliffe Hospital, Oxford OX3 9DU, UK.

出版信息

J Pathol. 2001 Nov;195(4):508-14. doi: 10.1002/path.972.

Abstract

Developments in telepathology robotic systems have evolved the concept of a 'virtual microscope' handling 'digital slides'. Slide digitization is a method of archiving salient histological features in numerical (digital) form. The value and potential of this have begun to be recognized by several international centres. Automated complete slide digitization has application at all levels of clinical practice and will benefit undergraduate, postgraduate, and continuing education. Unfortunately, as the volume of potential data on a histological slide represents a significant problem in terms of digitization, storage, and subsequent manipulation, the reality of virtual microscopy to date has comprised limited views at inadequate resolution. This paper outlines a system refined in the authors' laboratory, which employs a combination of enhanced hardware, image capture, and processing techniques designed for telepathology. The system is able to scan an entire slide at high magnification and create a library of such slides that may exist on an internet server or be distributed on removable media (such as CD-ROM or DVD). A digital slide allows image data manipulation at a level not possible with conventional light microscopy. Combinations of multiple users, multiple magnifications, annotations, and addition of ancillary textual and visual data are now possible. This demonstrates that with increased sophistication, the applications of telepathology technology need not be confined to second opinion, but can be extended on a wider front.

摘要

远程病理学机器人系统的发展使“虚拟显微镜”处理“数字切片”的概念得以演变。切片数字化是一种以数字形式存档显著组织学特征的方法。这一方法的价值和潜力已开始得到几个国际中心的认可。自动化的完整切片数字化在临床实践的各个层面都有应用,将使本科、研究生及继续教育受益。不幸的是,由于组织学切片上潜在数据的量在数字化、存储及后续处理方面是一个重大问题,迄今为止虚拟显微镜的实际应用包括分辨率不足的有限视野。本文概述了作者实验室改进的一个系统,该系统采用了专为远程病理学设计的增强硬件、图像采集和处理技术的组合。该系统能够以高倍放大扫描整张切片,并创建可存在于互联网服务器上或存储在可移动介质(如光盘或数字多功能光盘)上的此类切片库。数字切片允许进行传统光学显微镜无法实现的图像数据操作。现在,多个用户、多种放大倍数、注释以及添加辅助文本和视觉数据的组合成为可能。这表明,随着技术日益成熟,远程病理学技术的应用不必局限于二次诊断,而是可以在更广泛的领域得到扩展。

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