tetano
Editor, Senior Moderator
Hum Vaccin Immunother. 2014 Aug 28:e36168. [Epub ahead of print]
Estimate of influenza cases using generalized linear, additive and mixed models.
Oviedo M1, Dom?nguez A, Pilar Mu?oz M.
Author information
Abstract
We investigated the relationship between reported cases of influenza in Catalonia (Spain). Covariates analyzed were: population, age, data of report of influenza, and health region during 2010-2014 using data obtained from the SISAP program (Institut Catala de la Salut - Generalitat of Catalonia). Reported cases were related with the study of covariates using a descriptive analysis. Generalized Linear Models, Generalized Additive Models and Generalized Additive Mixed Models were used to estimate the evolution of the transmission of influenza. Additive models can estimate non-linear effects of the covariates by smooth functions; and mixed models can estimate data dependence and variability in factor variables using correlations structures and random effects, respectively. The incidence rate of influenza was calculated as the incidence per 100 000 people. The mean rate was 13.75 (range 0-27.5) in the winter months (December, January, February) and 3.38 (range 0-12.57) in the remaining months. Statistical analysis showed that Generalized Additive Mixed Models were better adapted to the temporal evolution of influenza (serial correlation 0.59) than classical linear models.
KEYWORDS:
Influenza; hospitalization; incidence rate; mortality
PMID:
25483550
[PubMed - as supplied by publisher]
http://www.ncbi.nlm.nih.gov/pubmed/25483550
Estimate of influenza cases using generalized linear, additive and mixed models.
Oviedo M1, Dom?nguez A, Pilar Mu?oz M.
Author information
Abstract
We investigated the relationship between reported cases of influenza in Catalonia (Spain). Covariates analyzed were: population, age, data of report of influenza, and health region during 2010-2014 using data obtained from the SISAP program (Institut Catala de la Salut - Generalitat of Catalonia). Reported cases were related with the study of covariates using a descriptive analysis. Generalized Linear Models, Generalized Additive Models and Generalized Additive Mixed Models were used to estimate the evolution of the transmission of influenza. Additive models can estimate non-linear effects of the covariates by smooth functions; and mixed models can estimate data dependence and variability in factor variables using correlations structures and random effects, respectively. The incidence rate of influenza was calculated as the incidence per 100 000 people. The mean rate was 13.75 (range 0-27.5) in the winter months (December, January, February) and 3.38 (range 0-12.57) in the remaining months. Statistical analysis showed that Generalized Additive Mixed Models were better adapted to the temporal evolution of influenza (serial correlation 0.59) than classical linear models.
KEYWORDS:
Influenza; hospitalization; incidence rate; mortality
PMID:
25483550
[PubMed - as supplied by publisher]
http://www.ncbi.nlm.nih.gov/pubmed/25483550