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Microbiology (Reading, England)|January 6, 2005
Can genetically modified Escherichia coli with neutral buoyancy induced by gas vesicles be used as an alternative method to clinorotation for microgravity studies?Michael Benoit, David KlausLife Sciences in Space Research|February 25, 2018
Spacecraft cabin environment effects on the growth and behavior of Chlorella vulgaris for life support applicationsTobias Niederwieser, Patrick Kociolek, David KlausAerospace Medicine and Human Performance|December 23, 2024
Defining and Measuring Crewmember Operational State for Spaceflight OperationsMichael Zero, David Klaus, Katya Arquilla, et al.Microbiology (Reading, England)|February 1, 1997
Investigation of space flight effects on Escherichia coli and a proposed model of underlying physical mechanismsDavid Klaus, Steven Simske, Paul Todd, et al.Plos One|November 3, 2016
A Molecular Genetic Basis Explaining Altered Bacterial Behavior in SpaceLuis Zea, Nripesh Prasad, Shawn E Levy, et al.Life (Basel, Switzerland)|September 23, 2022
Simulated Micro-, Lunar, and Martian Gravities on Earth-Effects on <i>Escherichia coli</i> Growth, Phenotype, and Sensitivity to AntibioticsLily A Allen, Amir H Kalani, Frederico Estante, et al.Frontiers in Microbiology|September 13, 2017
Phenotypic Changes Exhibited by <i>E. coli</i> Cultured in SpaceLuis Zea, Michael Larsen, Frederico Estante, et al.Frontiers in Microbiology|April 5, 2018
Spaceflight Modifies <i>Escherichia coli</i> Gene Expression in Response to Antibiotic Exposure and Reveals Role of Oxidative Stress ResponseThomas R Aunins, Keesha E Erickson, Nripesh Prasad, et al.Acta Astronautica|November 20, 2018
Design of a spaceflight biofilm experimentLuis Zea, Zeena Nisar, Phil Rubin, et al.Pageof 1