Design and Implementation of Clinical LIS360 Laboratory Management System Based on AI Technology
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Published:2023-03-14
Issue:1
Volume:16
Page:
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ISSN:1875-6883
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Container-title:International Journal of Computational Intelligence Systems
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language:en
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Short-container-title:Int J Comput Intell Syst
Author:
Fu Qiang,Lai Jianfeng,Zhong Tingting,Ran Li
Abstract
AbstractIn order to realize the automation, standardization, and informatization of clinical laboratory work, this research topic develops and accomplishes a set of laboratory information systems (LISs). According to the design methods of software engineering, we first understand user’s demand and the current work situation of clinical laboratory and establish the system case model using Unified Modeling Language (UML) modeling technique. During the system design period, we explain the key technology theories, network structure, system security policy and the connection scheme with hospital information system (HIS). During the system function design period, the system was designed with 6 modules, they are daily inspection work, inquire and statistics, quality control, data dictionary, system configuration, and other tools. Through establishing database model, we accomplish the system database structure design. After the system design, we perform system implementation and test, to show the interface of system implementation and test plan accordingly. The development and application of LIS360 laboratory information management system can greatly improve the management level of laboratory and promote the standardization, modernization, and science of laboratory management. This system has solved the traditional mode of sending test report sheet manually for many years in the laboratory and won valuable time for clinicians to know the patient's condition in time.
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
Computational Mathematics,General Computer Science
Reference36 articles.
1. Westin AA, Tryggestad H, Sandberg HR. New shared laboratory system for all of Central Norway. Tidsskr Nor Laegeforen. 139(9), (2019) (Norwegian, English). 2. Li, W., Lu, S., Cui, Z., Cui, J., Zhou, H., Wang, Y., Shao, Z., Ye, C., Kan, B., Xu, J.: PulseNet China, a model for future laboratory-based bacterial infectious disease surveillance in China. Front. Med. 6(4), 366–375 (2012) 3. Mills, D., Staley, S., Aisu, S., Kunde, T., Kimsey, P., Lewis, K.: International public health laboratory twinning: an innovative approach to strengthen the national health laboratory system in Uganda, 2014–2017. Public Health Rep. 134(2_suppl), 37S-42S (2019) 4. Liu, B., Ma, F., Rainey, J.J., Liu, X., Klena, J., Liu, X., Kan, B., Yan, M., Wang, D., Zhou, Y., Tang, G., Wang, M., Zhao, C.: Capacity assessment of the health laboratory system in two resource-limited provinces in China. BMC Public Health 19(Suppl 3), 467 (2019) 5. Su, B., Vagnone, P.S.: State public health laboratory system quality improvement activities. Public Health Rep. 128 Suppl 2(Suppl 2), 34–39 (2013)
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