Towards a more accurate quantitative assessment of seasonal Cryptosporidium infection risks in surface waters using species and genotype information

Author:

Lapen D.R.,Schmidt P.J.,Thomas J.L.,Edge T.A.,Flemming C.,Keithlin J.,Neumann N.,Pollari F.,Ruecker N.,Simhon A.,Topp E.,Wilkes G.,Pintar K.D.M.

Funder

Agriculture and Agri-Food Canada

National Agri-Environmental Standards Initiative

FoodNet Canada

Ontario Ministry of the Environment and Climate Change

Publisher

Elsevier BV

Subject

Pollution,Waste Management and Disposal,Water Science and Technology,Ecological Modelling,Environmental Engineering,Civil and Structural Engineering

Reference68 articles.

1. Differences in clinical manifestations among Cryptosporidium species and subtypes in HIV-infected persons;Cama;J. Infect. Dis.,2007

2. From Source to Tap – the Multi-barrier Approach to Safe Drinking Water. Federal-provincial-territorial Committee on Drinking Water of the Federal-provincial-territorial Committee on Environmental and Occupational Health and the Water Quality Task;CCME,2002

3. Long-term Cryptosporidium typing reveals the aetiology and species-specific epidemiology of human cryptosporidiosis in England and Wales, 2000 to 2003. Euro surveillance: bulletin European sur les maladies transmissibles;Chalmers;Eur. Commun. Dis. Bull.,2009

4. Cryptosporidium meleagridis: infectivity in healthy adult volunteers;Chappell;Am. J. Trop. Med. Hyg.,2011

5. A review of the global burden, novel diagnostics, therapeutics, and vaccine targets for Cryptosporidium;Checkley;Lancet Infect. Dis.,2015

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