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The experience of West Nile virus integrated surveillance system in the Emilia-Romagna region: five years of implementation, Italy, 2009 to 2013

Authors :
A. Mattivi
Michele Dottori
Marco Carrieri
E Bedeschi
Marco Tamba
Caterina Vocale
Paolo Gaibani
C Velati
Roberto Cagarelli
Mattia Calzolari
S. Natalini
Romeo Bellini
M. P. Landini
Paola Angelini
Nadia Pascarelli
Alessandro Albieri
Giada Rossini
A C Finarelli
Paolo Bonilauri
Bellini, R
Calzolari, M
Mattivi, A
Tamba, M
Angelini, P
Bonilauri, P
Albieri, A
Cagarelli, R
Carrieri, M
Dottori, M
Finarelli, A C
Gaibani, P
Landini, M P
Natalini, S
Pascarelli, N
Rossini, G
Velati, C
Vocale, C
Bedeschi, E
Source :
Scopus-Elsevier
Publication Year :
2014

Abstract

Predicting West Nile virus (WNV) circulation and the risk of WNV epidemics is difficult due to complex interactions of multiple factors involved. Surveillance systems that timely detect virus activity in targeted areas, and allow evidence-based risk assessments may therefore be necessary. Since 2009, a system integrating environmental (mosquitoes and birds) and human surveillance has been implemented and progressively improved in the Emilia-Romagna region, Italy. The objective is to increase knowledge of WNV circulation and to reduce the probability of virus transmission via blood, tissue and organ donation. As of 2013, the system has shown highly satisfactory results in terms of early detection capacity (the environmental surveillance component allowed detection of WNV circulation 3–4 weeks before human cases of West Nile neuroinvasive disease (WNND) occurred), sensitivity (capacity to detect virus circulation even at the enzootic level) and area specificity (capacity to indicate the spatial distribution of the risk for WNND). Strong correlations were observed between the vector index values and the number of human WNND cases registered at the province level. Taking into consideration two scenarios of surveillance, the first with environmental surveillance and the second without, the total costs for the period from 2009 to 2013 were reduced when environmental surveillance was considered (EUR 2.093 million for the first scenario vs EUR 2.560 million for the second). Environmental surveillance helped to reduce costs by enabling a more targeted blood unit testing strategy. The inclusion of environmental surveillance also increased the efficiency of detecting infected blood units and further allowed evidence-based adoption of preventative public health measures.

Details

ISSN :
15607917
Volume :
19
Issue :
44
Database :
OpenAIRE
Journal :
Euro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin
Accession number :
edsair.doi.dedup.....8e900eef4d169f82cda1c9ab556e3132