A review of the vector management methods to prevent and control outbreaks of West Nile virus infection and the challenge for Europe

被引:68
作者
Bellini, Romeo [1 ]
Zeller, Herve [2 ]
Van Bortel, Wim [2 ]
机构
[1] Ctr Agr Ambiente G Nicoli, I-40014 Crevalcore, Italy
[2] European Ctr Dis Prevent & Control, Stockholm, Sweden
来源
PARASITES & VECTORS | 2014年 / 7卷
关键词
West Nile virus; Vector-borne disease; Vector surveillance; Vector control; Europe; LOW VOLUME APPLICATIONS; CULEX-PIPIENS DIPTERA; HUMAN-HEALTH-RISK; NEW-YORK-CITY; MOSQUITO-CONTROL; ADULTICIDE APPLICATIONS; BACILLUS-SPHAERICUS; SACRAMENTO COUNTY; COACHELLA VALLEY; AEDES-AEGYPTI;
D O I
10.1186/1756-3305-7-323
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
West Nile virus infection is a growing concern in Europe. Vector management is often the primary option to prevent and control outbreaks of the disease. Its implementation is, however, complex and needs to be supported by integrated multidisciplinary surveillance systems and to be organized within the framework of predefined response plans. The impact of the vector control measures depends on multiple factors and the identification of the best combination of vector control methods is therefore not always straightforward. Therefore, this contribution aims at critically reviewing the existing vector control methods to prevent and control outbreaks of West Nile virus infection and to present the challenges for Europe. Most West Nile virus vector control experiences have been recently developed in the US, where ecological conditions are different from the EU and vector control is organized under a different regulatory frame. The extrapolation of information produced in North America to Europe might be limited because of the seemingly different epidemiology in the European region. Therefore, there is an urgent need to analyse the European experiences of the prevention and control of outbreaks of West Nile virus infection and to perform robust cost-benefit analysis that can guide the implementation of the appropriate control measures. Furthermore, to be effective, vector control programs require a strong organisational backbone relying on a previously defined plan, skilled technicians and operators, appropriate equipment, and sufficient financial resources. A decision making guide scheme is proposed which may assist in the process of implementation of vector control measures tailored on specific areas and considering the available information and possible scenarios.
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页数:11
相关论文
共 116 条
[1]   Potential mosquito vectors of arboviruses in Portugal: species, distribution, abundance and West Nile infection [J].
Almeida, A. P. G. ;
Galao, R. P. ;
Sousa, C. A. ;
Novo, M. T. ;
Parreira, R. ;
Pinto, J. ;
Piedade, J. ;
Esteves, A. .
TRANSACTIONS OF THE ROYAL SOCIETY OF TROPICAL MEDICINE AND HYGIENE, 2008, 102 (08) :823-832
[2]   Importance of vertical and horizontal transmission of West Nile virus by Culex pipiens in the northeastern United States [J].
Anderson, John F. ;
Main, Andy J. .
JOURNAL OF INFECTIOUS DISEASES, 2006, 194 (11) :1577-1579
[3]  
ANDIS MD, 1987, J AM MOSQUITO CONTR, V3, P125
[4]  
Andrade CFS, 2010, J VECTOR ECOL, V35, P75, DOI 10.1111/j.1948-7134.2010.00031.x
[5]   STUDIES ON HIBERNATING POPULATIONS OF CULEX PIPIENS FROM A WEST NILE VIRUS ENDEMIC FOCUS IN NEW YORK CITY: PARITY RATES AND ISOLATION OF WEST NILE VIRUS [J].
Andreadis, Theodore G. ;
Armstrong, Philip M. ;
Bajwa, Waheed I. .
JOURNAL OF THE AMERICAN MOSQUITO CONTROL ASSOCIATION, 2010, 26 (03) :257-264
[6]  
[Anonymous], 2009, FLORIDA MOSQUITO CON
[7]  
[Anonymous], 2005, SAFETY PYRETHROIDS P
[8]   Evaluation of West Nile Virus education campaign [J].
Averett, E ;
Neuberger, JS ;
Hansen, G ;
Fox, MH .
EMERGING INFECTIOUS DISEASES, 2005, 11 (11) :1751-1753
[9]   Economic Cost Analysis of West Nile Virus Outbreak, Sacramento County, California, USA, 2005 [J].
Barber, Loren M. ;
Schleier, Jerome J., III ;
Peterson, Robert K. D. .
EMERGING INFECTIOUS DISEASES, 2010, 16 (03) :480-486
[10]  
Bellini R., 1994, Bulletin of the Society for Vector Ecology, V19, P87