Field evaluation of Duddingtonia flagrans IAH 1297 for the reduction of worm burden in grazing animals: Tracer studies in sheep.
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[1] Jane Lamb,et al. Broad spectrum anthelmintic resistance of Haemonchus contortus in Northern NSW of Australia. , 2017, Veterinary parasitology.
[2] P. M. de Gives,et al. Feeding horses with industrially manufactured pellets with fungal spores to promote nematode integrated control. , 2016, Veterinary parasitology.
[3] R. Besier,et al. Prevalence and severity of anthelmintic resistance in ovine gastrointestinal nematodes in Australia (2009-2012). , 2014, Australian veterinary journal.
[4] M. Knox. Biological control of gastrointestinal nematodes and liver fluke in sheep and cattle , 2014 .
[5] A. Jex,et al. Impact of gastrointestinal parasitic nematodes of sheep, and the role of advanced molecular tools for exploring epidemiology and drug resistance - an Australian perspective , 2013, Parasites & Vectors.
[6] A. Vidyashankar,et al. An inconvenient truth: global worming and anthelmintic resistance. , 2012, Veterinary parasitology.
[7] P. M. de Gives,et al. Ability of the fungus Duddingtonia flagrans to adapt to the cyathostomin egg-output by spreading chlamydospores. , 2011, Veterinary parasitology.
[8] A. S. Da silva,et al. A suitable model for the utilization of Duddingtonia flagrans fungus in small-flock-size sheep farms. , 2011, Experimental parasitology.
[9] Elizabeth Macarthu. Hutchinson GW Nematode Parasites of Small Ruminants , Camelids and Cattle Diagnosis with Emphasis on Anthelmintic Efficacy and Resistance Testing , 2010 .
[10] A. Ayala-Burgos,et al. Digestibility of Duddingtonia flagrans chlamydospores in ruminants: in vitro and in vivo studies , 2009, BMC veterinary research.
[11] T. Schnieder,et al. Investigation on the influence of nematophagous fungi as feed additive on nematode infection risk of sheep and goats on pasture , 2008 .
[12] J. Uriarte,et al. Efficiency of Duddingtonia flagrans against Trichostrongyle infections of sheep on mountain pastures. , 2006, Veterinary parasitology.
[13] P. Mendoza-de Gives,et al. Biological Control of Gastrointestinal Parasitic Nematodes Using Duddingtonia flagrans in Sheep under Natural Conditions in Mexico , 2006, Annals of the New York Academy of Sciences.
[14] J. Vercruysse,et al. Evaluation of efficacy expectations for novel and non-chemical helminth control strategies in ruminants. , 2006, Veterinary parasitology.
[15] P. Waller,et al. Sustainable nematode parasite control strategies for ruminant livestock by grazing management and biological control , 2006 .
[16] H. Hoste,et al. Administration of Duddingtonia flagrans chlamydospores to goats to control gastro-intestinal nematodes: dose trials. , 2005, Veterinary research.
[17] M. Boguś,et al. In vitro assessment of the influence of nutrition and temperature on growing rates of five Duddingtonia flagrans isolates, their insecticidal properties and ability to impair Heligmosomoides polygyrus motility. , 2005, Experimental parasitology.
[18] P. Chandrawathani,et al. Field studies on the biological control of nematode parasites of sheep in the tropics, using the microfungus Duddingtonia flagrans. , 2004, Veterinary parasitology.
[19] J. Miller,et al. Efficiency of feeding Duddingtonia flagrans chlamydospores to grazing ewes on reducing availability of parasitic nematode larvae on pasture. , 2003, Veterinary parasitology.
[20] R. Besier,et al. Anthelmintic resistance in sheep nematodes in Australia: the need for new approaches , 2003 .
[21] R. Krecek,et al. World association for the advancement of veterinary parasitology (WAAVP): second edition of guidelines for evaluating the efficacy of equine anthelmintics. , 2002, Veterinary parasitology.
[22] Natalee Peart. Evaluation of feeding chlamydospores of Duddingtonia flagrans to ewe/lamb pairs and weaned lambs to biologically control levels of Haemonchus on pasture , 2002 .
[23] P. Waller,et al. The potential of nematophagous fungi to control the free-living stages of nematode parasites of sheep: towards the development of a fungal controlled release device. , 2001, Veterinary parasitology.
[24] M. Faedo,et al. Biological control of field infections of nematode parasites of young sheep with Duddingtonia flagrans and effects of spore intake on efficacy. , 2001, Veterinary parasitology.
[25] M. Larsen. Prospects for controlling animal parasitic nematodes by predacious micro fungi , 2000, Parasitology.
[26] D. Hennessy. WAAVP/Pfizer award for excellence in veterinary parasitology research. My involvement in, and some thoughts for livestock parasitological research in Australia. , 2000, Veterinary parasitology.
[27] H. Bjørn,et al. Growth rate and trapping efficacy of nematode-trapping fungi under constant and fluctuating temperatures , 1999, Parasitology Research.
[28] M. Larsen. Biological control of helminths. , 1999, International journal for parasitology.
[29] S. Thamsborg,et al. The preventive effect of the fungus Duddingtonia flagrans on trichostrongyle infections of lambs on pasture. , 1997, International journal for parasitology.
[30] P. Waller,et al. Workshop summary: biological control of nematode parasites of livestock. , 1996, Veterinary parasitology.
[31] J. Malone,et al. World Association for the Advancement of Veterinary Parasitology (W.A.A.V.P.) second edition of guidelines for evaluating the efficacy of anthelmintics in ruminants (bovine, ovine, caprine) , 1995, Veterinary parasitology.
[32] R. Dobson,et al. Worm control and anthelmintic resistance: adventures with a model. , 1995, Parasitology today.
[33] C. L. Duddington. Further records of British predacious fungi. I. , 1950 .