Pan-European Chikungunya surveillance: designing risk stratified surveillance zones
Open Access
- 31 October 2009
- journal article
- Published by Springer Nature in International Journal of Health Geographics
- Vol. 8 (1), 61
- https://doi.org/10.1186/1476-072x-8-61
Abstract
The first documented transmission of Chikungunya within Europe took place in Italy during the summer of 2007. Chikungunya, a viral infection affecting millions of people across Africa and Asia, can be debilitating and no prophylactic treatment exists. Although imported cases are reported frequently across Europe, 2007 was the first confirmed European outbreak and available evidence suggests that Aedes albopictus was the vector responsible and the index case was a visitor from India. This paper proposed pan-European surveillance zones for Chikungunya, based on the climatic conditions necessary for vector activity and viral transmission. Pan-European surveillance provides the best hope for an early-warning of outbreaks, because national boundaries do not play a role in defining the risk of this new vector borne disease threat. A review of climates, where Chikungunya has been active, was used to inform the delineation of three pan-European surveillance zones. These vary in size each month across the June-September period of greatest risk. The zones stretch across southern Europe from Portugal to Turkey. Although the focus of this study was to define the geography of potential surveillance zones based on the climatic limits on the vector and virus, a preliminary examination of inward bound airline passengers was also undertaken. This indicated that France and Italy are likely to be at greater risk due to the number of visitors they receive from Chikungunya active regions, principally viraemic visitors from India. Therefore this study represents a first attempt at creating risk stratified surveillance zones, which we believe could be usefully refined with the use of higher resolution climate data and more complete air travel data.Keywords
This publication has 34 references indexed in Scilit:
- Comparative full genome analysis revealed E1: A226V shift in 2007 Indian Chikungunya virus isolatesVirus Research, 2008
- Clinical burden of chikungunya virus infectionThe Lancet Infectious Diseases, 2008
- Chikungunya virus adapts to tiger mosquito via evolutionary convergence: a sign of things to come?Virology Journal, 2008
- Chikungunya in ItalyBMJ, 2007
- Changing patterns of chikungunya virus: re-emergence of a zoonotic arbovirusJournal of General Virology, 2007
- Chikungunya Virus, Cameroon, 2006Emerging Infectious Diseases, 2007
- Rapid and Real-Time Detection of Chikungunya Virus by Reverse Transcription Loop-Mediated Isothermal Amplification AssayJournal of Clinical Microbiology, 2007
- Novel Chikungunya Virus Variant in Travelers Returning from Indian Ocean IslandsEmerging Infectious Diseases, 2006
- Genome Microevolution of Chikungunya Viruses Causing the Indian Ocean OutbreakPLoS Medicine, 2006
- Geographic spread ofAedes albopictus in Europe and the concern among public health authoritiesEuropean Journal of Epidemiology, 1995