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J Kindt

Showing results (181-190 of 193) with videos related to

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Nanotechnology|August 11, 2011
Investigation of superconductivity in electrochemically fabricated AuSn nanowiresNitesh Kumar, M L Tian, J G Wang, et al.
Transplantation Proceedings|December 1, 1981
Primary structure of murine H-2Kb and beta 2-microglobulinJ E Coligan, F T Gates, T J Kindt, et al.
Journal of Immunology (Baltimore, Md. : 1950)|May 1, 1981
Immunochemical evidence in two haplotypes for at least three D region-encoded molecules, D, L, and RT H Hansen, K Ozato, M R Melino, et al.
AIDS Research and Human Retroviruses|February 1, 1995
Rabbits transfused with human immunodeficiency virus type 1-infected blood develop immune deficiency with CD4+ lymphocytopenia in the absence of clear evidence for HIV type 1 infectionR M Simpson, B S Hubbard, D W Alling, et al.
Journal of Investigative Surgery : the Official Journal of the Academy of Surgical Research|June 9, 2001
Thoracoscopy as a nonpharmacotherapeutic research modification for limiting postoperative chest painV A Hampshire, M L Thomas, J D Bacher, et al.
Immunogenetics|January 1, 1984
Specificity of the HLA class II reactive monoclonal antibody 33.1X M Li, J A Sogn, J E Coligan, et al.
Immunogenetics|January 1, 1984
Primary structural sequence polymorphism in the human class II MHC antigen 33.1M C Kuo, X M Li, G E Marti, et al.
Anti-Cancer Drugs|March 11, 2010
The autophilic anti-CD20 antibody DXL625 displays enhanced potency due to lipid raft-dependent induction of apoptosisMarc G Bingaman, Gargi D Basu, Tiana C Golding, et al.
Journal of Virology|June 17, 1998
Rabbit cells expressing human CD4 and human CCR5 are highly permissive for human immunodeficiency virus type 1 infectionR F Speck, M L Penn, J Wimmer, et al.
Virology|August 30, 2005
Gene expression in mice infected with West Nile virus strains of different neurovirulenceMarietjie Venter, Timothy G Myers, Michael A Wilson, et al.
Pageof 20

Showing results (181-190 of 193) with videos related to

Sort By:
Pageof 20
Nanotechnology|August 11, 2011
Investigation of superconductivity in electrochemically fabricated AuSn nanowiresNitesh Kumar, M L Tian, J G Wang, et al.
Transplantation Proceedings|December 1, 1981
Primary structure of murine H-2Kb and beta 2-microglobulinJ E Coligan, F T Gates, T J Kindt, et al.
Journal of Immunology (Baltimore, Md. : 1950)|May 1, 1981
Immunochemical evidence in two haplotypes for at least three D region-encoded molecules, D, L, and RT H Hansen, K Ozato, M R Melino, et al.
AIDS Research and Human Retroviruses|February 1, 1995
Rabbits transfused with human immunodeficiency virus type 1-infected blood develop immune deficiency with CD4+ lymphocytopenia in the absence of clear evidence for HIV type 1 infectionR M Simpson, B S Hubbard, D W Alling, et al.
Journal of Investigative Surgery : the Official Journal of the Academy of Surgical Research|June 9, 2001
Thoracoscopy as a nonpharmacotherapeutic research modification for limiting postoperative chest painV A Hampshire, M L Thomas, J D Bacher, et al.
Immunogenetics|January 1, 1984
Specificity of the HLA class II reactive monoclonal antibody 33.1X M Li, J A Sogn, J E Coligan, et al.
Immunogenetics|January 1, 1984
Primary structural sequence polymorphism in the human class II MHC antigen 33.1M C Kuo, X M Li, G E Marti, et al.
Anti-Cancer Drugs|March 11, 2010
The autophilic anti-CD20 antibody DXL625 displays enhanced potency due to lipid raft-dependent induction of apoptosisMarc G Bingaman, Gargi D Basu, Tiana C Golding, et al.
Journal of Virology|June 17, 1998
Rabbit cells expressing human CD4 and human CCR5 are highly permissive for human immunodeficiency virus type 1 infectionR F Speck, M L Penn, J Wimmer, et al.
Virology|August 30, 2005
Gene expression in mice infected with West Nile virus strains of different neurovirulenceMarietjie Venter, Timothy G Myers, Michael A Wilson, et al.
Pageof 20