Microgravity and its implication for fermentation biotechnology.
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[1] K. Taylor,et al. Optimization of Escherichia coli growth by controlled addition of glucose , 1989, Biotechnology and bioengineering.
[2] P. Bouloc,et al. The SIGNAL experiment in BIORACK: Escherichia coli in microgravity. , 1996, Journal of biotechnology.
[3] L. Stodieck,et al. Investigation of space flight effects on Escherichia coli and a proposed model of underlying physical mechanisms. , 1997, Microbiology.
[4] W. Briegleb,et al. Acceleration-sensitivity threshold of Physarum. , 1996, Journal of biotechnology.
[5] Alexander Repenning,et al. Agentsheets: A Medium for Creating Domain-Oriented Languages , 1995, Computer.
[6] P. Bouloc,et al. Escherichia coli metabolism in space. , 1991, Journal of general microbiology.
[7] D. Klaus,et al. Functional weightlessness during clinorotation of cell suspensions. , 1998, Advances in space research : the official journal of the Committee on Space Research.
[8] D. Klaus,et al. The effects of space flight on the production of monorden by Humicola fuscoatra WC5157 in solid-state fermentation , 1998, Applied Microbiology and Biotechnology.
[9] C. Woldringh,et al. Growth and division of Escherichia coli under microgravity conditions. , 1994, Research in microbiology.
[10] C. Woldringh,et al. Behavior of bacteria and antibiotics under space conditions. , 1994, Aviation, space, and environmental medicine.
[11] A. McPherson,et al. Recent advances in the microgravity crystallization of biological macromolecules. , 1997, Trends in biotechnology.
[12] R. Mattoni. SPACE-FLIGHT EFFECTS AND GAMMA RADIATION INTERACTION ON GROWTH AND INDUCTION OF LYSOGENIC BACTERIA: A PRELIMINARY REPORT. , 1968 .
[13] D. Pierson,et al. Gramicidin S Production by Bacillus brevis in Simulated Microgravity , 1997, Current Microbiology.