科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Frontiers in public health2026-01-01

Global region-specific influenza early warning by establishing an epidemic intensity threshold system: a modeling study.

Zhou Guan, Jinsong Gao, Yuetong Li, Jinna Wang, Mingyu Luo, Qinmei Liu, Tianqi Li, Zhenyu Gong, Jimin Sun

一句话结论 · In one sentence

The region-specific threshold system achieved early warning within ±2 weeks for the IV positivity rate in most zones, and peak timing errors within ±3 weeks in 11 of 18 evaluable observations, with sensitivity and specificity exceeding 80% in zones with distinct seasonality. The IV positivity rate is the most reliable indicator for global applications, while ILI-based indicators are best suited to zones with robust surveillance infrastructure and distinct seasonality. These findings support tailoring influenza early warning strategies to local epidemic characteristics.

原始摘要(英文原文)· Original abstract
BACKGROUND: Influenza exhibits marked geographical heterogeneity in epidemic patterns, yet there is no globally standardized approach for determining epidemic thresholds. This study aimed to establish a region-specific epidemic intensity threshold system and evaluate its performance in influenza early warning and peak timing simulation. METHODS: Weekly influenza surveillance data from 167 countries (2009-2020) were obtained from the WHO Global Influenza Surveillance and Response System (GISRS). Three indicators were calculated for each of the 18 influenza transmission zones: ILI consultation rate (ILI rate), influenza virus positivity rate (IV positivity rate), and influenza incidence. MEM models were fitted according to each zone's epidemic pattern to establish zone-specific threshold systems. Early warning and peak timing simulation performance were evaluated across target seasons. Model performance was assessed using leave-one-out cross-validation. RESULTS: Three epidemic patterns were identified: seasonal single-peak (North America, Europe, and Temperate South America), mixed single- and dual-peak (East Asia), and year-round or irregular (most African and tropical zones). Zone-specific four-level intensity thresholds were derived. The IV positivity rate demonstrated the most robust early warning performance, with alert-to-epidemic-start differences within ±2 weeks in most zones. Exact concordance or ±1 week difference accounted for the majority of observations. Peak timing simulation using influenza incidence achieved errors within ±3 weeks in 11 of 18 evaluable observations, concentrated in Europe and East Asia. Model sensitivity and specificity exceeded 80% in zones with distinct seasonality. The ILI rate performed adequately only in data-rich zones and showed limited utility in tropical and African settings. CONCLUSION: The region-specific threshold system achieved early warning within ±2 weeks for the IV positivity rate in most zones, and peak timing errors within ±3 weeks in 11 of 18 evaluable observations, with sensitivity and specificity exceeding 80% in zones with distinct seasonality. The IV positivity rate is the most reliable indicator for global applications, while ILI-based indicators are best suited to zones with robust surveillance infrastructure and distinct seasonality. These findings support tailoring influenza early warning strategies to local epidemic characteristics.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Global region-specific influenza early warning by establishing an epidemic intensity threshold system: a modeling study. — 科研速览 Science Skim