Landscape, Climate and Hantavirus Cardiopulmonary Syndrome Outbreaks

被引:0
作者
Paula Ribeiro Prist
Paulo Sérgio D´Andrea
Jean Paul Metzger
机构
[1] University of São Paulo,Department of Ecology, Bioscience Institute
[2] Oswaldo Cruz Institute,Department of Tropical Medicine
[3] FIOCRUZ,undefined
来源
EcoHealth | 2017年 / 14卷
关键词
Landscape composition and configuration; Landscape thresholds; Climate; Forest cover; Fragmentation; Disturbance; Hantavirus; HCPS; Reservoir species; Rodents;
D O I
暂无
中图分类号
学科分类号
摘要
We performed a literature review in order to improve our understanding of how landscape and climate drivers affect HCPS outbreaks. Anthropogenic landscape changes such as forest loss, fragmentation and agricultural land uses are related with a boost in hantavirus reservoir species abundance and hantavirus prevalence in tropical areas, increasing HCPS risk. Additionally, higher precipitation, especially in arid regions, favors an increase in vegetational biomass, which augments the resources for reservoir rodents, also increasing HCPS risk. Although these relationships were observed, few studies described it so far, and the ones that did it are concentrated in few places. To guide future research on this issue, we build a conceptual model relating landscape and climate variables with HCPS outbreaks and identified research opportunities. We point out the need for studies addressing the effects of landscape configuration, temperature and the interaction between climate and landscape variables. Critical landscape thresholds are also highly relevant, once HCPS risk transmission can increase rapidly above a certain degree of landscape degradation. These studies could be relevant to implement preventive measures, creating landscapes that can mitigate disease spread risk.
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页码:614 / 629
页数:15
相关论文
共 425 条
  • [1] Andreo V(2011)Modeling potential distribution of EcoHealth 8 332-348
  • [2] Glass G(2014), the Andes Virus (Genus: Viruses 6 201-222
  • [3] Shields T(2012)) reservoir, in Argentina PLoS ONE 7 e37254-1045
  • [4] Provensal C(2014)Estimating hantavirus risk in southern Argentina: a GIS-based approach combining human cases and host distribution Science 345 1041-1033
  • [5] Polop J(2005)Population density and seasonality effects on Sin Nombre virus transmission in North American deermice ( Ecology 86 1023-2428
  • [6] Andreo V(1999)) in outdoor enclosures Archives of Virology 144 2415-682
  • [7] Neteler M(2000)Using ecological thresholds to evaluate the costs and benefits of set-asides in a biodiversity hotspot Ecology 81 676-451
  • [8] Rocchini D(1998)Matrix structure obscures the relationship between interpatch movement and patch size and isolation The American Journal of Tropical Medicine and Hygiene 59 445-258
  • [9] Provensal C(2000)Dynamics of Puumala hantavirus infection in naturally infected bank voles ( Emerging Infectious Diseases 6 248-7594
  • [10] Levis S(2002)) Journal of Virology 76 587-987