Is restoring an ecosystem good for your health?
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[1] C. Wood,et al. Does biodiversity protect humans against infectious disease? , 2014, Ecology.
[2] R. Hough. Biodiversity and human health: evidence for causality? , 2013, Biodiversity and Conservation.
[3] L. Gilbert. Can restoration of afforested peatland regulate pests and disease , 2013 .
[4] J. Jones,et al. A meta‐analysis suggesting that the relationship between biodiversity and risk of zoonotic pathogen transmission is idiosyncratic , 2013, Ecology letters.
[5] Jane Memmott,et al. Emerging perspectives in the restoration of biodiversity-based ecosystem services. , 2012, Trends in ecology & evolution.
[6] Stephen J. Schmidt,et al. Reduction in Lyme Disease Risk as an Economic Benefit of Habitat Restoration , 2012 .
[7] P. Whelan,et al. Anthropogenic Ecological Change and Impacts on Mosquito Breeding and Control Strategies in Salt-Marshes, Northern Territory, Australia , 2012, EcoHealth.
[8] S. Randolph,et al. Pangloss revisited: a critique of the dilution effect and the biodiversity-buffers-disease paradigm , 2012, Parasitology.
[9] M. Power,et al. Structural and Functional Loss in Restored Wetland Ecosystems , 2012, PLoS biology.
[10] P. Weinstein,et al. Biodiversity and leptospirosis risk: a case of pathogen regulation? , 2011, Medical hypotheses.
[11] Ahindra Ghosh,et al. Ecosystems and Human Well-Being , 2013 .
[12] P. Weinstein,et al. The Roles of Predators, Competitors, and Secondary Salinization in Structuring Mosquito (Diptera: Culicidae) Assemblages in Ephemeral Water Bodies of the Wheatbelt of Western Australia , 2010, Environmental entomology.
[13] P. Speldewinde. Reinventing The Wheel: Teaching Restoration Ecology Without the Ecology , 2010 .
[14] P. Weinstein,et al. Colonization of Ephemeral Water Bodies in the Wheatbelt of Western Australia by Assemblages of Mosquitoes (Diptera: Culicidae): Role of Environmental Factors, Habitat, and Disturbance , 2009, Environmental entomology.
[15] R. Hobbs,et al. Novel ecosystems: implications for conservation and restoration. , 2009, Trends in ecology & evolution.
[16] A. Newton,et al. Enhancement of Biodiversity and Ecosystem Services by Ecological Restoration: A Meta-Analysis , 2009, Science.
[17] I. Rochlin,et al. Geostatistical evaluation of integrated marsh management impact on mosquito vectors using before-after-control-impact (BACI) design , 2009, International journal of health geographics.
[18] Andrew Jardine,et al. Influence of hosts on the ecology of arboviral transmission: potential mechanisms influencing dengue, Murray Valley encephalitis, and Ross River virus in Australia. , 2009, Vector borne and zoonotic diseases.
[19] J. Patz,et al. Disease emergence from global climate and land use change. , 2008, The Medical clinics of North America.
[20] P. Dale,et al. Wetlands and mosquitoes: a review , 2008, Wetlands Ecology and Management.
[21] Kate E. Jones,et al. Global trends in emerging infectious diseases , 2008, Nature.
[22] M. Lindsay,et al. Is There an Association between Dryland Salinity and Ross River Virus Disease in Southwestern Australia? , 2008, EcoHealth.
[23] John A Fritz,et al. EFFECTS OF VEGETATION CONTROL ON MOSQUITOES IN SEASONAL FRESHWATER WETLANDS , 2007, Journal of the American Mosquito Control Association.
[24] Philip Weinstein,et al. Dryland Salinity and Ecosystem Distress Syndrome: Human Health Implications , 2007, EcoHealth.
[25] A. Voinov,et al. Ecosystem and human health assessment to define environmental management strategies: The case of long-term human impacts on an Arctic lake. , 2006, The Science of the total environment.
[26] S. Hales,et al. Climate change and human health: present and future risks , 2006, The Lancet.
[27] P. Weinstein. Human Health Is Harmed by Ecosystem Degradation, But Does Intervention Improve It? A Research Challenge from the Millennium Ecosystem Assessment , 2005, EcoHealth.
[28] Russell J. Shiel,et al. Occurrence of aquatic invertebrates of the wheatbelt region of Western Australia in relation to salinity , 2005, Hydrobiologia.
[29] Jonathan A. Patz,et al. Unhealthy Landscapes: Policy Recommendations on Land Use Change and Infectious Disease Emergence , 2004, Environmental health perspectives.
[30] D. Norris,et al. Mosquito-borne Diseases as a Consequence of Land Use Change , 2004, EcoHealth.
[31] D. Rapport. The Health of Ecology and the Ecology of Health , 2002 .
[32] R. Ostfeld,et al. Biodiversity series: The function of biodiversity in the ecology of vector-borne zoonotic diseases , 2000 .
[33] J. Patz,et al. Effects of environmental change on emerging parasitic diseases. , 2000, International journal for parasitology.
[34] B. Anderson,et al. A test of community reassembly using the exotic communities of New Zealand roadsides in comparison to British roadsides , 2000 .
[35] S. O'Hara,et al. Exposure to airborne dust contaminated with pesticide in the Aral Sea region , 2000, The Lancet.
[36] R. Zetterström. Child health and environmental pollution in the Aral Sea region in Kazakhstan , 1999, Acta paediatrica (Oslo, Norway : 1992). Supplement.
[37] D. Fish,et al. The biological and social phenomenon of Lyme disease. , 1993, Science.
[38] R. Ostfeld. Biodiversity loss and the rise of zoonotic pathogens. , 2009, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[39] D. Richardson,et al. Novel ecosystems: theoretical and management aspects of the new ecological world order , 2006 .
[40] Millenium Ecosystem Assessment. Ecosystems and human well-being: synthesis , 2005 .
[41] K. Gross,et al. Alternative states and positive feedbacks in restoration ecology. , 2004, Trends in ecology & evolution.
[42] A. McMichael,et al. Ecosystems and Human well-being , 2003 .
[43] R. Ostfeld,et al. The function of biodiversity in the ecology of vector-borne zoonotic diseases , 2000 .