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1.
Rev Esp Quimioter ; 30(6): 443-449, 2017 Dec.
Article in Spanish | MEDLINE | ID: mdl-29141401

ABSTRACT

OBJECTIVE: Acinetobacter baumannii infections have increased over time becoming a significant issue. Consequently, those applications that allow to predict the evolution of an outbreak and the relevance of the different control methods, are very important. The design of mathematical models plays a central role in this topic. METHODS: Development of a deterministic mathematical model based on ordinary differential equations whose variables and parameters are defined upon the basis of knowledge of the epidemiology and characteristics of A. baumannii. This model is analyzed from a qualitative point of view and, also, its computational implementation is derived. RESULTS: Several simulations were obtained developed from different initial conditions. The qualitative analysis of these simulations provides formal evidence of most effective control measures. CONCLUSIONS: The implementation of the computational model is an extremely useful tool in terms of managing A. baumannii outbreaks. There is mathematical proof of the fact that the observance of efficient hygiene and screening rules reduces the number of infected patients.


Subject(s)
Acinetobacter Infections/epidemiology , Acinetobacter Infections/microbiology , Acinetobacter baumannii , Disease Outbreaks/prevention & control , Algorithms , Computer Simulation , Cross Infection , Disease Management , Drug Resistance, Multiple, Bacterial , Hospitals , Humans , Models, Theoretical
2.
Rev Esp Quimioter ; 25(3): 172-9, 2012 Sep.
Article in Spanish | MEDLINE | ID: mdl-22987261

ABSTRACT

The antibiotic resistance is one of the greatest challenges of the international health community. The study of antibiotic resistance must be a multidisciplinary task and, in this sense, the main goal of this work is to analyze the role that Mathematical Modeling can play in this scenario. A qualitative and cuantitative analysis of the works published in the scientific literature is done by means of a search in the most important databases: MEDLINE, SCOPUS and ISI Web of Science. Consequently, there are few papers related to our topic but the existing works have been published in high-quality and impact international journals. Moreover, we can state that mathematical models are a very important and useful tool to analyze and study both the treatments protocols for resistance prevention and the assesment of control strategies in hospital environtment, or the prediction of the evolution of diseases due to resistant strains.


Subject(s)
Drug Resistance, Bacterial , Models, Statistical , Bacterial Infections/epidemiology , Bacterial Infections/microbiology , Cross Infection/epidemiology , Cross Infection/microbiology , Humans
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