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Time Series Analysis of Influenza Incidence in Chinese Provinces from 2004 to 2011

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Specialty General Medicine
Date 2016 Jul 2
PMID 27367989
Citations 34
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Abstract

Influenza as a severe infectious disease has caused catastrophes throughout human history, and every pandemic of influenza has produced a great social burden. We compiled monthly data of influenza incidence from all provinces and autonomous regions in mainland China from January 2004 to December 2011, comprehensively evaluated and classified these data, and then randomly selected 4 provinces with higher incidence (Hebei, Gansu, Guizhou, and Hunan), 2 provinces with median incidence (Tianjin and Henan), 1 province with lower incidence (Shandong), using time series analysis to construct an ARIMA model, which is based on the monthly incidence from 2004 to 2011 as the training set. We exerted the X-12-ARIMA procedure for modeling due to the seasonality these data implied. Autocorrelation function (ACF), partial autocorrelation function (PACF), and automatic model selection were to determine the order of the model parameters. The optimal model was decided by a nonseasonal and seasonal moving average test. Finally, we applied this model to predict the monthly incidence of influenza in 2012 as the test set, and the simulated incidence was compared with the observed incidence to evaluate the model's validity by the criterion of both percentage variability in regression analyses (R) and root mean square error (RMSE). It is conceivable that SARIMA (0,1,1)(0,1,1)12 could simultaneously forecast the influenza incidence of the Hebei Province, Guizhou Province, Henan Province, and Shandong Province; SARIMA (1,0,0)(0,1,1)12 could forecast the influenza incidence in Gansu Province; SARIMA (3,1,1)(0,1,1)12 could forecast the influenza incidence in Tianjin City; and SARIMA (0,1,1)(0,0,1)12 could forecast the influenza incidence in Hunan Province. Time series analysis is a good tool for prediction of disease incidence.

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References
1.
Shu Y, Fang L, de Vlas S, Gao Y, Richardus J, Cao W . Dual seasonal patterns for influenza, China. Emerg Infect Dis. 2010; 16(4):725-6. PMC: 3321959. DOI: 10.3201/eid1604.091578. View

2.
Bellido-Blasco J, Pardo-Serrano F, Ballester-Rodriguez I, Arnedo-Pena A, Tirado-Balaguer M, Romeu-Garcia M . An estimate of the incidence of influenza-like illness during the influenza pandemic of 2009. Arch Bronconeumol. 2014; 51(8):373-8. DOI: 10.1016/j.arbres.2014.07.009. View

3.
Reichert T, Simonsen L, Sharma A, Pardo S, Fedson D, Miller M . Influenza and the winter increase in mortality in the United States, 1959-1999. Am J Epidemiol. 2004; 160(5):492-502. DOI: 10.1093/aje/kwh227. View

4.
Pridemore W, Snowden A . Reduction in suicide mortality following a new national alcohol policy in Slovenia: an interrupted time-series analysis. Am J Public Health. 2009; 99(5):915-20. PMC: 2667837. DOI: 10.2105/AJPH.2008.146183. View

5.
Johnson N, Mueller J . Updating the accounts: global mortality of the 1918-1920 "Spanish" influenza pandemic. Bull Hist Med. 2002; 76(1):105-15. DOI: 10.1353/bhm.2002.0022. View