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Simulation of CFSTR through development of a mathematical model for anaerobic growth of Escherichia coli cell population
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Simulation of the growth pattern of a single cell of Escherichia coli under anaerobic conditions
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Ataai M.M., Shuler M.L. Simulation of the growth pattern of a single cell of Escherichia coli under anaerobic conditions. Biotechnol. Bioeng. 27(7):1985b;1026-1035.
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Mathematical model for the control of ColE1 type plasmid replication
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A mathematical model for prediction of plasmid copy number and genetic stability in Escherichia coli
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Ataai M.M., Shuler M.L. A mathematical model for prediction of plasmid copy number and genetic stability in Escherichia coli. Biotechnol. Bioeng. 30:1987;389-397.
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Structured kinetic modeling of hybridoma growth and monoclonal antibody production in suspension cultures
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Batt B.C., Kompala D.S. Structured kinetic modeling of hybridoma growth and monoclonal antibody production in suspension cultures. Biotechnol. Bioeng. 34:1989;515-539.
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A novel structured kinetic modeling approach for analysis of plasmid instability in recombinant bacterial fermentations
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Bentley W.E., Kompala D.S. A novel structured kinetic modeling approach for analysis of plasmid instability in recombinant bacterial fermentations. Biotechnol. Bioeng. 33:1989;49-61.
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Testing of a potential mechanism for E. coli temporal cycle imprecision with a structured model
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Domach M.M., Shuler M.L. Testing of a potential mechanism for E. coli temporal cycle imprecision with a structured model. J. Theor. Biol. 106:1984a;577-585.
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A finite representation model for an asynchronous culture of E. coli
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Domach M.M., Shuler M.L. A finite representation model for an asynchronous culture of E. coli. Biotechnol. Bioeng. 26:1984b;877-884.
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Computer model for glucose-limited growth of a single cell of Escherichia coli B/r A
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Domach M.M., Leung S.K., Cahn R.E., Cocks G.G., Shuler M.L. Computer model for glucose-limited growth of a single cell of Escherichia coli B/r A. Biotechnol. Bioeng. 26(3):1984;203-216.
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10
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0025158185
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A highly structured model for simulation of batch and continuous culture of B. subtilis and examination of cellular differentiation
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Jeong J.W., Ataai M.M. A highly structured model for simulation of batch and continuous culture of B. subtilis and examination of cellular differentiation. Ann. NY Acad. Sci. 589:1990;82-90.
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A model for examining growth and sporulation processes of B. subtilis
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Jeong J.W., Snay J., Ataai M.M. A model for examining growth and sporulation processes of B. subtilis. Biotechnol. Bioeng. 35:1990;160-184.
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Escherichia coli growth dynamics: A three pool biochemically based description
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Joshi A., Palsson B.O. Escherichia coli growth dynamics: a three pool biochemically based description. Biotechnol. Bioeng. 31:1987;10-2116.
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A structured, segregated model for genetically modified E. coli cells and its use for prediction of plasmid stability
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Kim B.-G., Shuler M.L. A structured, segregated model for genetically modified E. coli cells and its use for prediction of plasmid stability. Biotechnol. Bioeng. 36:1990a;581-592.
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Kim, B.-G.1
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Analysis of pBR322 replication kinetics and its dependency on growth rate
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Kim B.-G., Shuler M.L. Analysis of pBR322 replication kinetics and its dependency on growth rate. Biotechnol. Bioeng. 36(3):1990b;233-242.
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Kinetic analysis of the effects of plasmid multimerization on segregational instability of ColE1 type plasmids in Escherichia coli B/r
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Kim B.-G., Shuler M.L. Kinetic analysis of the effects of plasmid multimerization on segregational instability of ColE1 type plasmids in Escherichia coli B/r. Biotechnol. Bioeng. 37:1991;1076-1086.
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Growth behavior and prediction of copy number and retention of ColE1-type plasmids in E. coli under slow growth conditions
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Kim B.G., Good T.A., Ataai M.M., Shuler M.L. Growth behavior and prediction of copy number and retention of ColE1-type plasmids in E. coli under slow growth conditions. Ann. NY Acad. Sci. 506:1987;384-395.
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Kim, B.G.1
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0028764980
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Ribosomal protein limitations in Escherichia coli under conditions of high translational activity
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Laffend L.A., Shuler M.L. Ribosomal protein limitations in Escherichia coli under conditions of high translational activity. Biotechnol. Bioeng. 43:1994a;388-398.
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Structured model of genetic control via the lac promoter in Escherichia coli
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Laffend L.A., Shuler M.L. Structured model of genetic control via the lac promoter in Escherichia coli. Biotechnol. Bioeng. 43:1994b;399-410.
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Double substrate limited growth of Escherichia coli
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Lee A.L., Ataai M.M., Shuler M.L. Double substrate limited growth of Escherichia coli. Biotechnol. Bioeng. 26:1984;1398-1401.
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A comprehensive model of human erythrocyte metabolism: Extensions to include pH effects
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Lee I-D, Palsson B.O. A comprehensive model of human erythrocyte metabolism: extensions to include pH effects. Biomed. Biochim. Acta. 49:1990;771-789.
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A mechanistically detailed model of cellular metabolism for glucose-limited growth of Escherichia coli B/r-A
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Simulations of host-plasmid interactions in E. coli: Copy number, promoter strength and ribosome binding site strength effects on metabolic activity and plasmid gene expression
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Peretti S.W., Bailey J.E. Simulations of host-plasmid interactions in E. coli: copy number, promoter strength and ribosome binding site strength effects on metabolic activity and plasmid gene expression. Biotechnol. Bioeng. 29:1987;392.
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Bistability in ammonium-limited cultures of Escherichia coli B/r
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Shu J., Wu P., Shuler M.L. Bistability in ammonium-limited cultures of Escherichia coli B/r. Chem. Eng. Commun. 58:1987;185-194.
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Prediction of effects of amino acid supplementation on growth of E. coli B/r
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Shu J., Shuler M.L. Prediction of effects of amino acid supplementation on growth of E. coli B/r. Biotechnol. Bioeng. 37:1991;708-715.
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Amino acid supplementation decreases plasmid retention in E. coli
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Shu J., Shuler M.L. Amino acid supplementation decreases plasmid retention in E. coli. Biotechnol. Bioeng. 40:1992;1197-1202.
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On the use of chemically structured models for bioreactors
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Shuler M.L On the use of chemically structured models for bioreactors. Chem. Eng. Commun. 36:1985;161-189.
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A mathematical model for the growth of a single bacterial cell
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Structured model for Saccharomyces cerevisiae
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Mathematical modeling and simulations of membrane bioreactor extractive fermentations
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Steinmeyer D.E., Shuler M.L. Mathematical modeling and simulations of membrane bioreactor extractive fermentations. Biotechnol. Prog. 6(5):1990;362-369.
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A computer model for intracellular pH regulation in Chinese Hamster Ovary cells
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Wu P., Ray N.G., Shuler M.L. A computer model for intracellular pH regulation in Chinese Hamster Ovary cells. Biotechnol. Prog. 9(4):1993;374-384.
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