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Cell Reports|June 7, 2023
Systems biology of competency in Vibrio natriegens is revealed by applying novel data analytics to the transcriptomeJongoh Shin, Kevin Rychel, Bernhard O PalssonNature Communications|December 14, 2020
Machine learning uncovers independently regulated modules in the Bacillus subtilis transcriptomeKevin Rychel, Anand V Sastry, Bernhard O PalssonActa Biomaterialia|June 10, 2019
Emerging themes and unifying concepts underlying cell behavior regulation by the pericellular spaceKiersten E Scott, Kevin Rychel, Sural Ranamukhaarachchi, et al.Nature Communications|November 22, 2023
High-resolution temporal profiling of E. coli transcriptional responseArianna Miano, Kevin Rychel, Andrew Lezia, et al.ACS Biomaterials Science & Engineering|October 23, 2018
Microporous Polymer Scaffolds for the Transplantation of Embryonic Stem Cell Derived Pancreatic Progenitors to a Clinically Translatable Site for the Treatment of Type I DiabetesTadas Kasputis, Daniel Clough, Fallon Noto, et al.Msystems|August 28, 2023
Machine learning uncovers the <i>Pseudomonas syringae</i> transcriptome in microbial communities and during infectionHeera Bajpe, Kevin Rychel, Cameron R Lamoureux, et al.Nucleic Acids Research|October 12, 2020
iModulonDB: a knowledgebase of microbial transcriptional regulation derived from machine learningKevin Rychel, Katherine Decker, Anand V Sastry, et al.Msystems|December 23, 2024
Revealing systematic changes in the transcriptome during the transition from exponential growth to stationary phaseHyun Gyu Lim, Ye Gao, Kevin Rychel, et al.Msystems|June 3, 2024
The hallmarks of a tradeoff in transcriptomes that balances stress and growth functionsChristopher Dalldorf, Kevin Rychel, Richard Szubin, et al.Research Square|April 24, 2023
The hallmarks of a tradeoff in transcriptomes that balances stress and growth functionsChristopher Dalldorf, Kevin Rychel, Richard Szubin, et al.Pageof 3