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April 30, 2026Ticks and Tick-borne Diseases0 citationsOpen Access

Climate drivers of tick-borne encephalitis in the Veneto Region, Italy, 2007–2024

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CCClaudia Cozzolino CangianoACAndrea CozzaECElisabetta Conte

Key Points

  • To describe TBE epidemiology and analyze spatiotemporal patterns and climate associations in the Veneto Region.
  • Population-based analysis of 397 TBE cases using hospital discharge records from 2007-2024.
  • Assessed temporal and spatial patterns of age-standardized incidences.
  • Employed a generalized additive mixed model for non-linear associations with environmental factors.
  • Age-standardized incidence increased from 0.855 cases per 100,000 person-years in 2022, with a 10.2% annual increase since 2014.
  • High-altitude areas showed the greatest incidence increase, with a projected 16% rise per 0.5 °C in minimum temperature.
  • Key drivers identified included minimum temperature and forest land cover, with associations for precipitation and altitude.

Abstract

Tick-borne encephalitis (TBE) is an arboviral disease in Europe, with increasing incidence in northeastern Italy. Transmission of the virus via Ixodes ticks is influenced by seasonal dynamics and environmental factors. This study aimed to describe TBE epidemiology in the Veneto Region, assess spatiotemporal patterns, and examine associations with environmental determinants, including possible impacts of climate change. We conducted a population-based study using hospital discharge records to identify TBE cases from 2007 to 2024. Temporal trends and spatial patterns of age-standardized incidences were assessed. A generalized additive mixed model was fitted to evaluate non-linear associations between TBE incidence and environmental predictors. Scenario-based analyses simulated changes in temperature and precipitation to estimate shifts in TBE risk. A total of 397 TBE hospitalizations were recorded, predominantly in mountainous areas (55.4%), with seasonal peaks in June and July. Age-standardized incidence significantly increased from 2014 to 2024, with an annual percentage increase of 10.2%, reaching 0.855 cases per 100,000 person-years in 2022. Changes in age-specific incidence were observed over time, with increasing trends particularly among children and adolescents. Monthly minimum temperature and forest land cover percentage emerged as key drivers of TBE risk, with U-shaped associations for precipitation and altitude. Scenario simulations suggested a maximum increase in incidence of 16% per 0.5 °C rise in minimum temperature, particularly in high-altitude municipalities. TBE hospitalizations in the Veneto Region show marked spatial, temporal, and age-related heterogeneity. Climate change is likely to increase incidence and expand at-risk areas, underscoring the need for integrated One Health surveillance and targeted prevention strategies.

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Cite This Study

Cangiano et al. (2026) studied this question.

synapsesocial.com/papers/69f2f0991e5f7920c6386ccfhttps://doi.org/10.1016/j.ttbdis.2026.102651
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