Cai S, Liu X, Yang L, Ji S, Yang S, Xiao X, Wang D. Effects of Residential Greenness on Influenza Virus Infection in 1,012,430 People: A Nationwide Individual-Level Study in China. Environ Health (Wash). 2025 Sep 18;3(10):1154-1163
Residential greenness, a fundamental component of urban design, could contribute to the prevention of respiratory infections via several potential mechanisms. However, the health benefits of greenness on influenza epidemics in real world are not as clear. In this cross-sectional, associational study, a series of logistic models were constructed to assess the association between individual-level residential greenness exposure, measured by the normalized difference vegetation index (NDVI), and the risk of influenza virus infection in China via 8 years of influenza surveillance data. From 2010 to 2017, 3,131,881 influenza-like illness (ILI) cases were tested for influenza, and 1,012,430 (32.3%) participants with detailed building-level residential addresses were included in this study. Overall, a protective effect of residential greenness was observed, with 2.6% lower odds of influenza virus infection per one-quartile increase in the NDVI (odds ratio (OR) = 0.974, 95% confidence interval (CI): 0.963-0.985). Stratified analyses indicated that the protective effects of residential greenness were strongest among adults aged ≥60 years (OR = 0.853, 95% CI: 0.814-0.894), but among school-aged children, the association was positive. There were no protective effects at other city scales except in megacities (OR = 0.907, 95% CI: 0.886-0.930). Given the rapid aging and urbanization process in China, policies aimed at optimizing the allocation and design of green spaces might help reduce respiratory infection transmission.
See Also:
Latest articles in those days:
- Emergence of a genetically distinct cluster of influenza A(H3N2) viruses within subclade J.2.2 associated with hospitalization during the 2024-2025 season in Auvergne-Rh?ne-Alpes, France 2 hours ago
- Interaction between DEAD-box RNA helicase 10 and influenza PB1 polymerase selectively regulates influenza A virus replication 2 hours ago
- Genetic Diversity of Clade 2.3.4.4b H5Nx High Pathogenicity Avian Influenza Viruses Detected in Korea During the 2025-2026 Winter Season and Pathogenicity of H5N1 and H5N9 Viruses 2 hours ago
- Update and optimization of a multiplex RT-qPCR assay to overcome diagnostic failure in emerging influenza A(H3N2) subclades J.2 and K (Peru, 2024-2026) 2 hours ago
- Antigenic and structural analysis of the influenza hemagglutinin lateral patch 2 hours ago
[Go Top] [Close Window]


