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1.
Chinese Journal of Medical Science Research Management ; (4): 269-271, 2012.
Article in Chinese | WPRIM | ID: wpr-419755

ABSTRACT

This article describes the development,components and function of the laboratory automation system (LAS) and laboratory information system(LIS). And it also discusses the construction and application laboratory automation,and the operation of the automated laboratory information system.

2.
Journal of Korean Society of Medical Informatics ; : 119-125, 1999.
Article in Korean | WPRIM | ID: wpr-113654

ABSTRACT

Difficulties in calculation that hindered the practice of the delta check in the past is now no longer a problem thanks to the development of computers. But, high false positive rates, which creates heavy burden of checking-work load, are still a problem in the practice of the delta check. We propose a new approach to the reduction of false positive rates, naming our method "the multi-item univariate delta check (MIUDC) method". By the multi-item univariate delta check method, we mean a method in which univariate delta checks are performed on multiple items and specimens with the positive univariate delta check in at least k items receive a detailed investigation. Using data collected in the Department of Clinical Pathology at Korea University Guro Hospital via the Korea University Laboratory Information System, our research found that if we put specimens with positive univariate delta check in at least four test items (k=4) under a detailed investigation, check-out volumes will be light and efficiency will be high. As for test items deserving of more interest, total cholesterol, albumin, and total protein are appropriate because the false positive rate associated with them in the MIUDC was zero in a simulation study.


Subject(s)
Chemistry, Clinical , Cholesterol , Clinical Laboratory Information Systems , Korea , Pathology, Clinical , Quality Control
3.
Chinese Medical Equipment Journal ; (6)1993.
Article in Chinese | WPRIM | ID: wpr-594690

ABSTRACT

Objective To construct health examination system based on network to satisfy the growing demand for businesses management. Methods Through interacting on the system interface with LIS. The use of diagnostic expressions, templates and default values speeded up medical data entry and deposit in scan mode to non -digital medical images. Results The software of health examination information system was developed and the work flow of health examination was reconstructed. Conclusion The physical examination information system can greatly reduce the workload of repeated transcription and entering, and enhance the efficiency of health examination management.

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