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Host–parasite coevolution: why changing population size matters, , , and . Zoology, 119 (4): 330--338 (2016)Using a Sequential Regimen to Eliminate Bacteria at Sublethal Antibiotic Dosages, , , , , , , , and . PLoS Biol, 13 (4): e1002104+ (Apr 8, 2015)WormExp: a web-based application for a Caenorhabditis elegans-specific gene expression enrichment analysis., , and . Bioinform., 32 (6): 943-945 (2016)When the Most Potent Combination of Antibiotics Selects for the Greatest Bacterial Load: The Smile-Frown Transition, , , , , , and . PLOS Biology, 11 (4): e1001540+ (Apr 23, 2013)Cellular hysteresis as a principle to maximize the efficacy of antibiotic therapy, , , , , , , and . Proceedings of the National Academy of Sciences, 115 (39): 9767--9772 (September 2018)Host-parasite coevolution in populations of constant and variable size, , , , and . BMC Evolutionary Biology, 15 (1): 212 (2015)Lotka–Volterra dynamics kills the Red Queen: population size fluctuations and associated stochasticity dramatically change host-parasite coevolution, , , and . BMC Evolutionary Biology, 13 (1): 254 (2013)