|
|
The Concept and Design of Safety Management Innovation in the Use of Medical Equipment: Design of Real-time Monitoring System for Temperature and Humidity of Infant Incubator Based on Internet of Things in China |
YIN Jiao-jiao, WANG Xi |
West China Second Hospital of Sichuan Universily, Chengdu 610041, China |
|
|
Abstract Ensuring safety in the use of medical equipment is an important guarantee for clinical diagnosis and treatment. Because medical equipment is mostly electrical and electronic equipment, the suddenness of its failure is inevitable. Although some equipment has regular preventive maintenance and metrological calibration, it is patient-free static calibrated. In China, because of its large population, large patient base, and large use of medical equipment, nurses are too busy taking care of patients and cannot pay attention to the safety of the use of each device. Therefore, we propose using the Internet of Things and IT technology to carry out real-time monitoring and alarming of important parameters of some special, high-risk, and large-used medical equipment, so as to strengthen the safety management of equipment use. Through the management innovation, this article successfully implemented real-time monitoring of the temperature and humidity of the neonatal incubator; and greatly improved the safety in the use of such equipment.
|
Received: 12 July 2021
|
Corresponding Authors:
WANG Xi.
|
|
|
|
[1] National Medical Products Administration. Decree No.18 of China Food and Drug Administration[S]. The Chapter Fourth. Provisions for Medical Device Registration, 2014. [2] Wang Xi, Zhuo Zhi, Fu Hongjia.Infant incubator temperature monitoring difference analysis and research[J]. Chinese Journal of Medical Instrumentation, 2016, 40(2): 128-130. [3] Barbosa A, Oliveira I.0 advento das incubadoras no exterior e no brasil: um ensaio historico[J]. Pediatria Atual, 2002, 6(15):1-45. [4] White RD. The physical environment of neonatal intensive care unit-implications for premature newborns and their care givers[J]. Business Briefing: US Pediatric Care, 2005:13-15. [5] Datasus Minist'erio da Saude. Incubadoras [EB/OL]. [2009]. http://www2.datasus.gov.br/DATASUS/index. phparea=0205. [6] Arone EM.Estudo das variac, ões da umidade relativa no microclima de uma incubadora infantil funcionando come sem'agua em seu reservat'orio. Master'sthesis, Faculdade São Camilo de Administrac, ão Hospitalar e Sa'ude P'ublica, São Paulo (SP). 1993. [7] Farges P, Bouattoura D, Villon P. Dynamic programming approach for newborn's incubator humidity control[J]. IEEE Transactions on Biomedical Engineering, 1998, 45(1):48-55. [8] Lyon AJ, Pikkar ME, Badger P, et al. Temperature control in very low birth weights infants during first 5 days of life[J]. Archives of Disease in Childhood, 1997, 76, F47. [9] Singla SK, Singh V. Design of a microcontroller based temperature and humidity controller for infant incubator[J]. Journal of Medical Imaging & Health Informatics, 2015, 5(4): 704-708. [10] World Health Organization.Thermal protection of the newborn: A practical guide, Maternal and Newborn Health/Safe Motherhood Unit Division of Reproductive Health (Technical Support)[M]. [1997-11-01] Geneva. [11] Wang Xi, Fu Hongjia, Wu Dayong.Construction of clinical engineering information system supervision of use safety of medical device[J]. China Medical Device, 2010, 25(5): 3-6. |
|
|
|