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Cook, Elizabeth A.J.Dobson, E.Kiyong'a, A.Akoko, James M.Ogendo, A.Bronsvoort, B.M. de C.Kemp, Stephen J.Agwanda, B.Fèvre, Eric M.[Bats and rodents as a source of emerging human disease in Kenya]Bats and rodents as a source of emerging human disease in Kenya

Bett, Bernard K.Omolo, AbisalomHansen, F.Notenbaert, An Maria OmerKemp, Stephen J.[Spatial-temporal analysis of the risk of Rift Valley fever in Kenya]Spatial-temporal analysis of the risk of Rift Valley fever in Kenya

African trypanosomiasis, caused by extracellular protozoan parasites (Trypanosoma), is, a major disease in cattle that affects agricultural production in broad regions of Africa. The, parasites are transmitted between mammals by infected tsetse flies (Glossina sp.) during, blood feeding. Both wil...


Mingyan YuMuteti, C.Ogugo, M.Ritchie, W.A.Raper, J.Kemp, Stephen J.[African trypanosomiasis resistance in cattle by a transgenic approach]African trypanosomiasis resistance in cattle by a transgenic approach
Kemp, Stephen J.[Automation of the Lymphocytotoxicity test for the detection of anti-class II antibodies]Automation of the Lymphocytotoxicity test for the detection of anti-class II antibodies
Kemp, Stephen J.Teale, A.J.[An assay for the fully automated reading of the lymphocytotoxicity test and its application to the detection of bovine class I and class II MHC antigens]An assay for the fully automated reading of the lymphocytotoxicity test and its application to the detection of bovine class I and class II MHC antigens

Malaria and trypanosomiasis are vector-borne protozoal diseases which disproportionately affect the poor. Both give rise to immense human suffering; malaria exerts its effect directly on human health, while trypanosomiasis causes damage largely though its effect on the health and productivity of ...


Foote, S.J.Iraqi, F.A.Kemp, Stephen J.[Controlling malaria and African trypanosomiasis: The role of the mouse]Controlling malaria and African trypanosomiasis: The role of the mouse

To map the genetic sources of trypanotolerance in mice, a linkage analysis of survival following trypanosome challenge was performed by selective genotyping in a large F2 population produced by crossing the resistant C57BL/6 and susceptible BALB/c inbred mouse lines. We report evidence of a chrom...


Kemp, Stephen J.Darvasi, A.Soller, M.Teale, A.J.[Genetic control of resistance to trypanosomiasis]Genetic control of resistance to trypanosomiasis

To examine differences in cytokine profiles that may confer tolerance/susceptibility to bovine African trypanosomiasis, N'Dama (trypanotolerant, n = 8) and Boran (trypanosusceptible, n = 8) cattle were experimentally challenged with Trypanosoma congolense. Blood samples were collected over a 34-d...


O'Gorman, G.M.Park, S.D.E.Hill, E.W.Meade, K.G.Mitchell, L.C.Agaba, MorrisGibson, John P.Hanotte, Olivier H.Naessens, JanKemp, Stephen J.MacHugh, D.E.[Cytokine mRNA profiling of peripheral blood mononuclear cells from trypanotolerant and trypanosusceptible cattle infected with Trypanosoma congolense]Cytokine mRNA profiling of peripheral blood mononuclear cells from trypanotolerant and trypanosusceptible cattle infected with Trypanosoma congolense

Background: Familial pancreatic cancer (FPC) describes a group of families where the inheritance of pancreatic cancer is consistent with an autosomal-dominant mode of inheritance. The 4q32-34 region has been previously identified as a potential locus for FPC in a large American family.


Earl, J.Yan, L.Vitone, L.J.Risk, J.Kemp, Stephen J.McFaul, C.Neoptolemos, J.P.Greenhalf, W.Kress, R.Sina-Frey, M.Hahn, S.Rieder, H.Bartsch, D.K.[Evaluation of the 4q32-34 Locus in European familial pancreatic cancer]Evaluation of the 4q32-34 Locus in European familial pancreatic cancer
Iraqi, F.A.Kemp, Stephen J.Teale, A.J.[Fine mapping of trypanosomiasis resistance QTLs in mice using advanced intercross lines]Fine mapping of trypanosomiasis resistance QTLs in mice using advanced intercross lines

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