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Scientific Reports|January 20, 2018
Programmed cell death can increase the efficacy of microbial bet -hedgingEric Libby, William W Driscoll, William C RatcliffScientific Reports|April 21, 2018
Publisher Correction: Programmed cell death can increase the efficacy of microbial bet hedgingEric Libby, William W Driscoll, William C RatcliffThe American Naturalist|February 23, 2019
Shortsighted Evolution Constrains the Efficacy of Long-Term Bet HedgingEric Libby, William C RatcliffBiorxiv : the Preprint Server for Biology|March 27, 2026
The limits of information in precise regulation of early multicellular life cyclesHanna Isaksson, William C Ratcliff, Eric LibbyEvolution; International Journal of Organic Evolution|November 21, 2014
Courting disaster: How diversification rate affects fitness under riskWilliam C Ratcliff, Peter Hawthorne, Eric LibbyPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|July 20, 2016
Stabilizing multicellularity through ratchetingEric Libby, Peter L Conlin, Ben Kerr, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|October 25, 2017
Nascent life cycles and the emergence of higher-level individualityWilliam C Ratcliff, Matthew Herron, Peter L Conlin, et al.Genes|April 30, 2021
The Consequences of Budding versus Binary Fission on Adaptation and Aging in Primitive MulticellularityHanna Isaksson, Peter L Conlin, Ben Kerr, et al.Proceedings of the National Academy of Sciences of the United States of America|April 6, 2026
The fitness costs of reproductive specialization scale inversely with organismal sizeChristopher Zhang, Eric Libby, Anthony Burnetti, et al.Nature Communications|May 15, 2021
Oxygen suppression of macroscopic multicellularityG Ozan Bozdag, Eric Libby, Rozenn Pineau, et al.Pageof 13