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实验室自动化系统。概念与术语介绍。

Laboratory automation systems. An introduction to concepts and terminology.

作者信息

Markin R S

机构信息

Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha 68198-3135.

出版信息

Am J Clin Pathol. 1992 Oct;98(4 Suppl 1):S3-10.

PMID:1344701
Abstract

The concept of laboratory automation has existed for years; such automation has been used primarily in nonclinical and industrial settings. The next step is to implement automation systems in the clinical laboratory. A laboratory automation system consists of robots, conveyor systems, machine vision, and computer hardware and software. Specimen movement and result reporting are based on the identification of specimens using bar coded specimens and bar coded specimen carriers. The implementation of a laboratory automation system is dependent on the presence of a laboratory information system. An interface between the laboratory information system and the laboratory automation system provides the information required to move the specimen through the laboratory. The reporting of results is dependent on the laboratory information system or manual input, depending on the type of work cell in which the results are produced. The greatest hurdle to overcome in developing and implementing a laboratory automation system is the integration of systems, including commercial laboratory instrumentation and user-defined work cells. The barriers to implementation primarily are proprietary in nature: instrument software and instrument hardware. When the instrument manufacturers realize the necessity for development of electronic and physical integration, the proliferation of laboratory automation systems will occur. Several opportunities exist for the reduction in laboratory expenses and the development of new positions, such as "robotechnologist," a staff member who would function in a manner similar to the current laboratory information systems manager. This article describes the author's concepts of laboratory automation.

摘要

实验室自动化的概念已经存在多年;这种自动化主要应用于非临床和工业环境。下一步是在临床实验室中实施自动化系统。实验室自动化系统由机器人、传送系统、机器视觉以及计算机硬件和软件组成。样本的移动和结果报告基于使用条形码样本和条形码样本载体对样本进行的识别。实验室自动化系统的实施依赖于实验室信息系统的存在。实验室信息系统与实验室自动化系统之间的接口提供了使样本在实验室中流转所需的信息。结果报告取决于实验室信息系统或手动输入,这取决于产生结果的工作单元类型。开发和实施实验室自动化系统时需要克服的最大障碍是系统集成,包括商业实验室仪器和用户定义的工作单元。实施的障碍主要是出于专有性质:仪器软件和仪器硬件。当仪器制造商意识到电子和物理集成开发的必要性时,实验室自动化系统将会大量涌现。减少实验室费用以及开发新职位存在诸多机会,比如“机器人技术专家”,其工作方式类似于当前的实验室信息系统经理。本文描述了作者关于实验室自动化的概念。

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