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Bulletin of Mathematical Biology|October 2, 2010
A theory of immunodominance and adaptive regulationPeter S Kim, Peter P Lee, Doron Levy
Bulletin of Mathematical Biology|December 7, 2007
Modeling imatinib-treated chronic myelogenous leukemia: reducing the complexity of agent-based modelsPeter S Kim, Peter P Lee, Doron Levy
Bulletin of Mathematical Biology|December 17, 2009
Emergent group dynamics governed by regulatory cells produce a robust primary T cell responsePeter S Kim, Peter P Lee, Doron Levy
Plos Computational Biology|June 21, 2008
Dynamics and potential impact of the immune response to chronic myelogenous leukemiaPeter S Kim, Peter P Lee, Doron Levy
Methods in Enzymology|November 10, 2009
Modeling and simulation of the immune system as a self-regulating networkPeter S Kim, Doron Levy, Peter P Lee
Bulletin of Mathematical Biology|July 30, 2008
A PDE model for imatinib-treated chronic myelogenous leukemiaPeter S Kim, Peter P Lee, Doron Levy
Journal of Theoretical Biology|February 3, 2007
Modeling regulation mechanisms in the immune systemPeter S Kim, Peter P Lee, Doron Levy
Journal of Theoretical Biology|June 22, 2005
Post-transplantation dynamics of the immune response to chronic myelogenous leukemiaRob DeConde, Peter S Kim, Doron Levy, et al.
Bulletin of Mathematical Biology|June 10, 2010
Strategic treatment interruptions during imatinib treatment of chronic myelogenous leukemiaDana Paquin, Peter S Kim, Peter P Lee, et al.
Journal of Theoretical Biology|February 1, 2011
T cell state transition produces an emergent change detectorPeter S Kim, Peter P Lee
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