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Formal- and high-structured kinetic process modelling and footprint area analysis of binary imaged cells: Tools to understand and optimize multistage-continuous PHA biosynthesis Cover

Formal- and high-structured kinetic process modelling and footprint area analysis of binary imaged cells: Tools to understand and optimize multistage-continuous PHA biosynthesis

Open Access
|Jul 2017

Authors

Martin Koller

martin.koller@uni-graz.at

University of Graz, Office of Research Management and Service, c/o Institute of Chemistry, NAWI, Graz, Austria
ARENA (Association for Resource Efficient and Sustainable Technologies),, Graz, Austria

Denis Vadlja

University of Zagreb, Faculty of Food Technology and Biotechnology, Department of Biochemical Engineering,, Zagreb, Croatia

Gerhart Braunegg

ARENA (Association for Resource Efficient and Sustainable Technologies),, Graz, Austria

Aid Atlić

VTU Technology GmbH, Grambach/, Graz, Austria

Predrag Horvat

University of Zagreb, Faculty of Food Technology and Biotechnology, Department of Biochemical Engineering,, Zagreb, Croatia
Language: English
Page range: 203 - 211
Published on: Jul 20, 2017
Published by: European Biotechnology Thematic Network Association
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 Martin Koller, Denis Vadlja, Gerhart Braunegg, Aid Atlić, Predrag Horvat, published by European Biotechnology Thematic Network Association
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.