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Methods in Molecular Biology (Clifton, N.J.)|March 19, 2011
The use of flow cytometry to detect transfected gene productsR Bujdoso, D Sargan, K Ballingall, et al.Gene|April 15, 1992
Cloning of a cDNA encoding the ovine interleukin-2 receptor 55-kDa protein, CD25R Bujdoso, D Sargan, M Williamson, et al.Clinical and Experimental Immunology|November 1, 1992
Phenotypic analysis of lymphocyte populations in the lungs and regional lymphoid tissue of sheep naturally infected with maedi visna virusN J Watt, N MacIntyre, D Collie, et al.Veterinary Immunology and Immunopathology|April 1, 1995
The survival and growth of ovine afferent lymph dendritic cells in culture depends on tumour necrosis factor-alpha and is enhanced by granulocyte-macrophage colony-stimulating factor but inhibited by interferon-gammaD M Haig, A Percival, J Mitchell, et al.International Journal of Immunogenetics|May 23, 2006
Understanding the genetics of autoimmune disease: two loci that regulate late onset Addison's disease in Portuguese Water DogsK Chase, D Sargan, K Miller, et al.Cytokine|April 1, 1995
Molecular cloning and expression of DNA encoding ovine interleukin 2R Bujdoso, M Williamson, D Roy, et al.The Veterinary Record|November 14, 1992
Clinicopathological investigation of primary, uncomplicated maedi-visna virus infectionN J Watt, T J King, D Collie, et al.Journal of Virology|September 1, 1993
Early events in immune evasion by the lentivirus maedi-visna occurring within infected lymphoid tissueP Bird, B Blacklaws, H T Reyburn, et al.Clinical and Experimental Immunology|November 1, 1995
The restricted IgG1 antibody response to maedi visna virus is seen following infection but not following immunization with recombinant gag proteinP Bird, H T Reyburn, B A Blacklaws, et al.Genomics|December 28, 1999
A complete comparative chromosome map for the dog, red fox, and human and its integration with canine genetic mapsF Yang, P C O'Brien, B S Milne, et al.Pageof 2