Parents
Sign in to add mentorRichard E. Lenski | grad student | 2006 | Michigan State | |
(Digital sex: Causes and consequences of recombination.) | ||||
Charles Ofria | grad student | 2006 | Michigan State | |
François Taddei | post-doc | 2009- | INSERM | |
Sebastian Bonhoeffer | post-doc | 2006-2009 | ETH/Uni Zurich |
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Publications
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Dimitriu T, Misevic D, Lindner AB, et al. (2021) Bacteria can be selected to help beneficial plasmids spread. Plos Biology. 19: e3001489 |
Bafeta A, Bobe J, Clucas J, et al. (2020) Ten simple rules for open human health research. Plos Computational Biology. 16: e1007846 |
Lehman J, Clune J, Misevic D. (2020) The Surprising Creativity of Digital Evolution: A Collection of Anecdotes from the Evolutionary Computation and Artificial Life Research Communities. Artificial Life. 1-33 |
Frénoy A, Taddei F, Misevic D. (2017) Second-order cooperation: Cooperative offspring as a living public good arising from second-order selection on non-cooperative individuals. Evolution; International Journal of Organic Evolution |
Dimitriu T, Misevic D, Lotton C, et al. (2016) Indirect Fitness Benefits Enable the Spread of Host Genes Promoting Costly Transfer of Beneficial Plasmids. Plos Biology. 14: e1002478 |
Miramontes O, Taddei F, Lindner AB, et al. (2016) Shape matters in cooperation Artificial Life. 340-341 |
Dimitriu T, Misevic D, Lindner AB, et al. (2015) Mobile genetic elements are involved in bacterial sociality. Mobile Genetic Elements. 5: 7-11 |
Misevic D, Frénoy A, Lindner AB, et al. (2015) Shape matters: lifecycle of cooperative patches promotes cooperation in bulky populations. Evolution; International Journal of Organic Evolution. 69: 788-802 |
Dimitriu T, Lotton C, Bénard-Capelle J, et al. (2014) Genetic information transfer promotes cooperation in bacteria. Proceedings of the National Academy of Sciences of the United States of America. 111: 11103-8 |
Frénoy A, Taddei F, Misevic D. (2014) Constrained Genetic Architecture Promotes Cooperation Artificial Life. 23-24 |