Martin A. Hjortso
Affiliations: | Louisiana State University, Baton Rouge, LA, United States |
Area:
Chemical EngineeringWebsite:
https://www.lsu.edu/eng/che/people/emeritus-faculty/hjortso.phpGoogle:
"Martin Hjortso"Parents
Sign in to add mentorJames E. Bailey | grad student | 1983 | University of Houston (Chemistry Tree) | |
(A Segregated Model of the Growth of Baker's Yeast) |
Children
Sign in to add traineeAbdelqader M. Zamamiri | grad student | 2001 | Louisiana State |
Yongchun Zhang | grad student | 2002 | Louisiana State |
Young-Pyo Jeon | grad student | 2006 | Louisiana State |
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Publications
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Zhang Y, Zamamiri AM, Henson MA, et al. (2001) Bifurcation Analysis for Discrimination of Budding Yeast Models Ifac Proceedings Volumes. 34: 103-108 |
Mhaskar P, Zamamiri AM, Henson MA, et al. (2001) A Cell Population Model with Structured Medium for Budding Yeast Cultures Ifac Proceedings Volumes. 34: 91-96 |
Zhu G, Zamamiri AM, Henson MA, et al. (2000) A Model Predictive Control Strategy for Stabilization of Oscillating Yeast Cultures Ifac Proceedings Volumes. 33: 219-224 |
Hjortso MA. (1996) Population balance models of autonomous periodic dynamics in microbial cultures. Their use in process optimization Canadian Journal of Chemical Engineering. 74: 612-620 |
Hjortso M. (1995) Solution and properties of age population balance models which assume discrete division ages Journal of Biotechnology. 42: 271-280 |
Hjortso MA, Nielsen J. (1995) Population balance models of autonomous microbial oscillations Journal of Biotechnology. 42: 255-269 |
Kim S, Hopper E, Hjortso M. (1995) Hairy Root Growth Models: Effect of Different Branching Patterns Biotechnology Progress. 11: 178-186 |
Hjortso MA, Nielsen J. (1994) A conceptual model of autonomous oscillations in microbial cultures Chemical Engineering Science. 49: 1083-1095 |
Roos JW, Hjortso MA. (1993) A mathematical model of specific cell adhesion: release of specifically adhering populations by soluble ligands Biofouling. 6: 381-404 |
Flint-Wandel J, Hjortso M. (1993) A flow cell reactor for the study of growth kinetics of single hairy roots Biotechnology Techniques. 7: 447-452 |