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Updated: Dec 31, 2025

An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 10, 2013
Meteorological factors affecting respiratory syncytial virus infection: A time-series analysis
Hailin Zhang1,2, Shunhang Wen2, Jingwei Zheng3
1Department of Pediatrics, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.
Insights
This study found that meteorological factors, especially temperature, significantly impact respiratory syncytial virus (RSV) infections in hospitalized children. These findings can help predict seasonal RSV epidemics using weather data.
Area of Science:
- Pediatrics
- Epidemiology
- Environmental Health
Background:
- Respiratory syncytial virus (RSV) is a leading cause of pediatric hospitalizations.
- The influence of meteorological factors on seasonal RSV epidemics is not fully understood.
- Understanding this relationship is crucial for public health interventions.
Purpose of the Study:
- To investigate the association between meteorological factors and RSV infections in hospitalized children.
- To utilize statistical models for analyzing this relationship.
Main Methods:
- Retrospective review of pediatric RSV cases (2008-2017) at a tertiary hospital.
- Analysis of meteorological data including temperature, humidity, rainfall, and wind speed.
- Application of time-series models: ARIMA, GAM, and LASSO.
Main Results:
- A significant seasonal pattern of RSV detection was observed, peaking in winter and spring.
- Lower temperatures and higher wind speeds were linked to increased RSV detection.
- Temperature and relative humidity showed a negative correlation with RSV incidence.
Conclusions:
- RSV seasonality in hospitalized children is strongly associated with temperature.
- Predictive models, like the LASSO-based approach, can forecast RSV epidemics using weather data.
Introduction:
Respiratory syncytial virus (RSV) infection is a major cause of hospitalization in children. Meteorological factors are known to influence seasonal RSV epidemics, but the relationship between meteorological factors and RSV infection in children is not well understood. We aimed to explore the relationship between meteorological factors and RSV infections among hospitalized children, using different statistical models.
Methods:
We conducted a retrospective review concerning children with RSV infections admitted to a tertiary pediatric hospital in Wenzhou, China, between January 2008 and December 2017. The relationship between meteorological factors (average daily temperatures, average daily relative humidity, rainfall, rainfall days, and wind speed) and the incidence of RSV in hospitalized children was analyzed using three time-series models, namely an autoregressive integrated moving average (ARIMA) model, a generalized additive model (GAM), and a least absolute shrinkage and selection operator (LASSO)-based model.
Results:
In total, 15 858 (17.6%) children tested positive for RSV infection. The ARIMA model revealed a marked seasonal pattern in the RSV detection rate, which peaked in winter and spring. The model was a good predictor of RSV incidence (R2 : 83.5%). The GAM revealed that a lower temperature and higher wind speed preceded increases in RSV detection. The LASSO-based model revealed that temperature and relative humidity were negatively correlated with RSV detection.
Conclusions:
Seasonality of RSV infection in hospitalized children correlated strongly with temperature. The LASSO-based model can be used to predict annual RSV epidemics using weather forecast data.
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