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Becca Asquith

Showing results (21-30 of 84) with videos related to

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Plos Computational Biology|March 21, 2009
T-cell epitope prediction: rescaling can mask biological variation between MHC moleculesAidan MacNamara, Ulrich Kadolsky, Charles R M Bangham, et al.
Virology|December 11, 2012
HTLV-1: persistence and pathogenesisLucy B Cook, Marjet Elemans, Aileen G Rowan, et al.
Plos Biology|March 7, 2006
Inefficient cytotoxic T lymphocyte-mediated killing of HIV-1-infected cells in vivoBecca Asquith, Charles T T Edwards, Marc Lipsitch, et al.
Immunotherapy Advances|August 15, 2022
Peripheral T cell lymphopenia in COVID-19: potential mechanisms and impactSifan Zhang, Becca Asquith, Richard Szydlo, et al.
Journal of Virology|December 4, 2003
Reduced cell turnover in bovine leukemia virus-infected, persistently lymphocytotic cattleChristophe Debacq, Becca Asquith, Michal Reichert, et al.
Trends in Immunology|March 17, 2009
Lymphocyte kinetics in health and diseaseBecca Asquith, José A M Borghans, Vitaly V Ganusov, et al.
Trends in Immunology|December 5, 2002
Lymphocyte kinetics: the interpretation of labelling dataBecca Asquith, Christophe Debacq, Derek C Macallan, et al.
Frontiers in Immunology|May 11, 2017
Physiologically Based Simulations of Deuterated Glucose for Quantifying Cell Turnover in HumansJulio Lahoz-Beneytez, Stephan Schaller, Derek Macallan, et al.
Plos Computational Biology|September 17, 2020
The relative contributions of infectious and mitotic spread to HTLV-1 persistenceDaniel J Laydon, Vikram Sunkara, Lies Boelen, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 18, 2002
Increased cell proliferation, but not reduced cell death, induces lymphocytosis in bovine leukemia virus-infected sheepChristophe Debacq, Becca Asquith, Pierre Kerkhofs, et al.
Pageof 9

Showing results (21-30 of 84) with videos related to

Sort By:
Pageof 9
Plos Computational Biology|March 21, 2009
T-cell epitope prediction: rescaling can mask biological variation between MHC moleculesAidan MacNamara, Ulrich Kadolsky, Charles R M Bangham, et al.
Virology|December 11, 2012
HTLV-1: persistence and pathogenesisLucy B Cook, Marjet Elemans, Aileen G Rowan, et al.
Plos Biology|March 7, 2006
Inefficient cytotoxic T lymphocyte-mediated killing of HIV-1-infected cells in vivoBecca Asquith, Charles T T Edwards, Marc Lipsitch, et al.
Immunotherapy Advances|August 15, 2022
Peripheral T cell lymphopenia in COVID-19: potential mechanisms and impactSifan Zhang, Becca Asquith, Richard Szydlo, et al.
Journal of Virology|December 4, 2003
Reduced cell turnover in bovine leukemia virus-infected, persistently lymphocytotic cattleChristophe Debacq, Becca Asquith, Michal Reichert, et al.
Trends in Immunology|March 17, 2009
Lymphocyte kinetics in health and diseaseBecca Asquith, José A M Borghans, Vitaly V Ganusov, et al.
Trends in Immunology|December 5, 2002
Lymphocyte kinetics: the interpretation of labelling dataBecca Asquith, Christophe Debacq, Derek C Macallan, et al.
Frontiers in Immunology|May 11, 2017
Physiologically Based Simulations of Deuterated Glucose for Quantifying Cell Turnover in HumansJulio Lahoz-Beneytez, Stephan Schaller, Derek Macallan, et al.
Plos Computational Biology|September 17, 2020
The relative contributions of infectious and mitotic spread to HTLV-1 persistenceDaniel J Laydon, Vikram Sunkara, Lies Boelen, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 18, 2002
Increased cell proliferation, but not reduced cell death, induces lymphocytosis in bovine leukemia virus-infected sheepChristophe Debacq, Becca Asquith, Pierre Kerkhofs, et al.
Pageof 9