Large-scale spatial population databases in infectious disease research

被引:0
作者
Catherine Linard
Andrew J Tatem
机构
[1] Université Libre de Bruxelles,Biological Control and Spatial Ecology,
[2] ,Fonds National de la Recherche Scientifique (F.R.S.
[3] Rue d'Egmont 5,FNRS),
[4] ,Department of Geography,
[5] University of Florida,Emerging Pathogens Institute,
[6] ,Fogarty International Center,
[7] University of Florida,undefined
[8] ,undefined
[9] National Institutes of Health,undefined
[10] ,undefined
来源
International Journal of Health Geographics | / 11卷
关键词
Human population; Global; Infectious diseases; Spatial demography; Health metrics;
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摘要
Modelling studies on the spatial distribution and spread of infectious diseases are becoming increasingly detailed and sophisticated, with global risk mapping and epidemic modelling studies now popular. Yet, in deriving populations at risk of disease estimates, these spatial models must rely on existing global and regional datasets on population distribution, which are often based on outdated and coarse resolution data. Moreover, a variety of different methods have been used to model population distribution at large spatial scales. In this review we describe the main global gridded population datasets that are freely available for health researchers and compare their construction methods, and highlight the uncertainties inherent in these population datasets. We review their application in past studies on disease risk and dynamics, and discuss how the choice of dataset can affect results. Moreover, we highlight how the lack of contemporary, detailed and reliable data on human population distribution in low income countries is proving a barrier to obtaining accurate large-scale estimates of population at risk and constructing reliable models of disease spread, and suggest research directions required to further reduce these barriers.
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  • [1] Ostfeld RS(2005)Spatial epidemiology: an emerging (or re-emerging) discipline Trends Ecol Evol 20 328-336
  • [2] Glass GE(2004)Spatial Epidemiology: Current Approaches and Future Challenges Environ Health Perspect 112 998-1006
  • [3] Keesing F(2010)Pathogenic landscapes: Interactions between land, people, disease vectors, and their animal hosts Int J Health Geogr 9 54-359
  • [4] Elliott P(2004)Spatial heterogeneity and the persistence of infectious diseases J Theor Biol 229 349-399
  • [5] Wartenberg D(1997)(Meta) population dynamics of infectious diseases Trends Ecol Evol 12 395-763
  • [6] Lambin EF(2000)A mathematical model for endemic malaria with variable human and mosquito populations Math Comput Model 32 747-589
  • [7] Tran A(1991)The spread of HIV-1 in Africa: sexual contact patterns and the predicted demographic impact of AIDS Nature 352 581-136
  • [8] Vanwambeke SO(1997)An age-structured model for pertussis transmission Math Biosci 145 89-1276
  • [9] Linard C(1997)Mortality by cause for eight regions of the world: Global Burden of Disease Study Lancet 349 1269-32
  • [10] Soti V(2002)Estimates of world-wide distribution of child deaths from acute respiratory infections Lancet Infect Dis 2 25-2234