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临床实验室自动化的最新趋势。

Recent trends in clinical laboratory automation.

作者信息

Markin R S

机构信息

Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha, USA.

出版信息

Clin Lab Manage Rev. 1998 May-Jun;12(3):176-80.

Abstract

A convergence of concepts has allowed clinical laboratory automation to proceed in a greater number of laboratories: developing automation control interfaces, direct track sampling, and adopting a universal interface. The laboratory automation system (LAS) must interface to the laboratory information system (LIS), which provides the information necessary for routing and scheduling and for future rules-based processing, an important component of the LAS. The automation system also must operate in a real-time or near real-time environment and use the single tube per carrier paradigm. LAS capabilities should span the clinical laboratory and run parallel to the LIS with respect to information flow. The laboratory automation software will control the automated technology and the transportation system that binds clinical laboratory instruments together. It must be able to both drive the hardware components and interface with patient information sources, and it should further the goals of the health-care delivery system by supporting outcomes optimization and utilization management of laboratory resources. The development of workcells based on disciplines such as chemistry or hematology is having and will continue to have a significant effect on the acceptance of clinical laboratory automation technologies.

摘要

多种概念的融合使得临床实验室自动化能够在更多实验室中得以推进

开发自动化控制接口、直接轨道采样以及采用通用接口。实验室自动化系统(LAS)必须与实验室信息系统(LIS)相连接,LIS提供了路由和调度以及未来基于规则处理所需的信息,这是LAS的一个重要组成部分。自动化系统还必须在实时或近实时环境中运行,并采用每个载体单管的模式。LAS的功能应涵盖临床实验室,并且在信息流方面与LIS并行运行。实验室自动化软件将控制自动化技术以及将临床实验室仪器连接在一起的运输系统。它必须既能驱动硬件组件,又能与患者信息源进行接口连接,并且应通过支持结果优化和实验室资源利用管理来推进医疗保健提供系统的目标。基于化学或血液学等学科的工作单元的发展已经并将继续对临床实验室自动化技术的接受产生重大影响。

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