West Nile virus (WNV) is one of the most threatening mosquito-borne pathogens in Italy where hundreds of human cases were recorded during the last decade. Here, we estimated the WNV incidence in the avian population in the Emilia-Romagna region through a modelling framework which enabled us to eventually assess the fraction of birds that present anti-WNV antibodies at the end of each epidemiological season. We fitted an SIR model to ornithological data, consisting of 18,989 specimens belonging to Corvidae species collected between 2013 and 2022: every year from May to November birds are captured or shot and tested for WNV genome presence. We found that the incidence peaks between mid-July and late August, infected corvids seem on average 17% more likely to be captured with respect to susceptible ones and seroprevalence was estimated to be larger than other years at the end of 2018, consistent with the anomalous number of recorded human infections. Thanks to our modelling study we quantified WNV infection dynamics in the corvid community, which is still poorly investigated despite its importance for the virus circulation. To the best of our knowledge, this is among the first studies providing quantitative information on infection and immunity in the bird population, yielding new important insights on WNV transmission dynamics

De Nardi, A.; Marini, G.; Dorigatti, I.; Rosa', R.; Tamba, M.; Gelmini, L.; Prosperi, A.; Menegale, F.; Poletti, P.; Calzolari, M.; Pugliese, A. (2025). Quantifying West Nile virus circulation in the avian host population in Northern Italy. INFECTIOUS DISEASE MODELLING, 10 (2): 375-386. doi: 10.1016/j.idm.2024.12.009 handle: https://hdl.handle.net/10449/88095

Quantifying West Nile virus circulation in the avian host population in Northern Italy

Marini, G.
;
Rosa', R.;
2025-01-01

Abstract

West Nile virus (WNV) is one of the most threatening mosquito-borne pathogens in Italy where hundreds of human cases were recorded during the last decade. Here, we estimated the WNV incidence in the avian population in the Emilia-Romagna region through a modelling framework which enabled us to eventually assess the fraction of birds that present anti-WNV antibodies at the end of each epidemiological season. We fitted an SIR model to ornithological data, consisting of 18,989 specimens belonging to Corvidae species collected between 2013 and 2022: every year from May to November birds are captured or shot and tested for WNV genome presence. We found that the incidence peaks between mid-July and late August, infected corvids seem on average 17% more likely to be captured with respect to susceptible ones and seroprevalence was estimated to be larger than other years at the end of 2018, consistent with the anomalous number of recorded human infections. Thanks to our modelling study we quantified WNV infection dynamics in the corvid community, which is still poorly investigated despite its importance for the virus circulation. To the best of our knowledge, this is among the first studies providing quantitative information on infection and immunity in the bird population, yielding new important insights on WNV transmission dynamics
Birds
Vector-borne disease
Mathematical model
Mosquito
Public health
Settore MVET-03/B - Parassitologia e malattie parassitarie degli animali e dell'uomo
2025
De Nardi, A.; Marini, G.; Dorigatti, I.; Rosa', R.; Tamba, M.; Gelmini, L.; Prosperi, A.; Menegale, F.; Poletti, P.; Calzolari, M.; Pugliese, A. (2025). Quantifying West Nile virus circulation in the avian host population in Northern Italy. INFECTIOUS DISEASE MODELLING, 10 (2): 375-386. doi: 10.1016/j.idm.2024.12.009 handle: https://hdl.handle.net/10449/88095
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