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My primary research interest lies in the evolution of cooperation and the role of population structures. Cooperation is a central theme in evolutionary biology and forms the basis of communities of ’living’ systems ranging from replicating molecules to animal and human societies. The act of cooperation incurs some cost to the donor and produce a benefit to the recipient. Even though groups of cooperators are better off than groups of defectors the evolution of cooperative traits is far from obvious under Darwinian selection because cooperators are inherently prone to exploitation by defectors. Nonetheless, cooperation is abundant in nature. Although considerable progress has been made in theory and experiment, the understanding of how to offset the advantage of selfish cheaters is still far from complete. Since several years I am now working on different aspects of how to overcome this dilemma. In particular, this includes voluntary participation in social interactions, adding reward or punishment opportunities as well as effects of structured populations. More recently I became interested in modeling cancer biology as a fascinating application of evolutionary game theory in structured populations.
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PLoS computational biologyno. 3 (2022): e1009877-e1009877
Proceedings of the National Academy of Sciences of the United States of Americano. 42 (2021)
PLOS Computational Biologypp.1-17, (2021)
Proceedings of the National Academy of Sciences (2021)
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