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Laboratory automation is one of the development trends of laboratory medicine, especially in the process of medical and health system reform in China, based on the establishment of universal medical security system, a large number of medical needs were released, patients increased, the specimen increased, Lab Automation laboratory automation can adapt to this Of the demand, so the past two years, large domestic hospitals have introduced a fully automated assembly line.
Laboratory automation refers to the analysis of different analytical instruments and analysis before and after the sample system through automation and information network connection. LAS usually contains a sample before and after the processing unit, Lab Automation analysis unit, sample transport system and support the operation of the unit software system and laboratory information system. Lab Automation LAS is customarily divided into total laboratory automation (TLA) and modular laboratory automation (MLA) systems.
The characteristics of laboratory automation
The ideal LAS should have the following characteristics: ① openness: not limited to only a manufacturer of equipment connected, should be able to connect with any other manufacturers of the analyzer; ② integrity: a complete "analysis before - analysis - Analysis of "hardware and software support, Lab Automation information system integrity; ③ flexibility: automatic system can be based on site requirements, a variety of places placed; ④ intelligence: highly intelligent, user-friendly system design, contribute to the successful completion of the experiment ; ⑤ independence: the functional units are both mutual cooperation and relatively independent, Lab Automation the unit can operate independently. But to meet all the above conditions is still quite difficult. As a result, LAS has a broad and narrow laboratory automation.
Classification of laboratory automation
First, the whole laboratory automation
Definition Full laboratory automation (TLA) is a combination of analytical instruments and analytical pretreatment equipment and analytical processing equipment to automate blood collection selection, labeling, sorting, transport, sample processing, analysis and storage. Constitute a pipeline operation, to achieve the automation of the inspection process, also known as the generalized laboratory automation system. Lab Automation Since the time taken for manual sample treatment is more than 70% of the total testing process and is the main cause of reporting errors, Lab Automation the primary goal of laboratory automation is to minimize the number of steps that do not have value-added benefits throughout the analysis cycle, including samples Classification, opening, centrifugal, the sample into the analytical instruments and classification storage, that is, to achieve part of the sample pre-processing automation.
The second goal of automation is to increase the available time of the value-added benefit step in the analysis cycle as much as possible so that the inspector has more time and effort to improve the quality of the test results. The step of value-added benefits includes review of the risk results and decides whether to carry out re-examination or additional test items based on specific results. These functions can be automated in sample post-processing systems.
Laboratory automation is committed to improving the work flow, Lab Automation improve work efficiency and quality of testing to promote the construction and development of the laboratory. It is important to choose the right automation solution when considering the use of pipelines to improve the workflow. Lab Automation Reduce human error → improve efficiency and data credibility. In Europe and the United States major industrial areas widely used for 20 years. The lab is flexible and flexible to meet future business growth solutions to help you make your labs more cost-effective.
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