Team:Aachen/Attributions
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<h2>Prof. Dr.-Ing. Lars M. Blank</h2> | <h2>Prof. Dr.-Ing. Lars M. Blank</h2> | ||
- | <h4>RWTH Institute for Applied | + | <h4>RWTH Institute for Applied Microbiology (iAMB)</h4> |
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<img class="imgshadow" style="float: left;" src="https://static.igem.org/mediawiki/2014/4/42/Aachen_LarsBlank.jpg" width="150px" /> | <img class="imgshadow" style="float: left;" src="https://static.igem.org/mediawiki/2014/4/42/Aachen_LarsBlank.jpg" width="150px" /> | ||
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<img class="imgshadow" style="float: left;" src="https://static.igem.org/mediawiki/2014/8/88/Aachen_WolfgangWiechert.jpg" width="150px" /> | <img class="imgshadow" style="float: left;" src="https://static.igem.org/mediawiki/2014/8/88/Aachen_WolfgangWiechert.jpg" width="150px" /> | ||
- | Prof. Wiechert's main area of work lies within the field of applied systems bio(techno)logy of microorganisms with a special focus on methodological developments for quantitative biology. Characteristics of his research work are a close integration of experimental and theoretical work within multi disciplinary projects. As the head of the Systems Biotechnology research division at Jülich Research Centre, he is developing methods for quantitative metabolomics, fluxomics and proteomics including model based mathematical methods for experimental design, parameter estimation, and process optimization in biotechnological systems. Within the framework of systems biology mathematical models at different levels of details are formulated and used to integrate multi-omics data | + | Prof. Wiechert's main area of work lies within the field of applied systems bio(techno)logy of microorganisms with a special focus on methodological developments for quantitative biology. Characteristics of his research work are a close integration of experimental and theoretical work within multi disciplinary projects. As the head of the Systems Biotechnology research division at Jülich Research Centre, he is developing methods for quantitative metabolomics, fluxomics and proteomics including model based mathematical methods for experimental design, parameter estimation, and process optimization in biotechnological systems. Within the framework of systems biology mathematical models at different levels of details are formulated and used to integrate multi-omics data. Future work will also incorporate micro fluidic methods for single cell analysis. In general all research results are used to drive forward the process of gaining knowledge in the course of an iterative improvement of industrial production systems. This proceeds in close cooperation of all working groups at the IBG-1. Together with industrial partners also diverse examples from industry are investigated and further developed. Read more about Prof. Wiechert's work on the <a href=http://www.fz-juelich.de/SharedDocs/Personen/IBG/IBG-1/EN/Research_groups/general/wiechert.html/">IBG-1 website</a>. |
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Revision as of 06:27, 4 October 2014
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