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196 Publikationen

2018 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2919063
Visualization of tandem repeat mutagenesis in Bacillus subtilis
Dormeyer, Miriam, Visualization of tandem repeat mutagenesis in Bacillus subtilis. DNA REPAIR 63 (). , 2018
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2017 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2912738
Coarse-graining bacteria colonies for modelling critical solute distributions in picolitre bioreactors for bacterial studies on single-cell level
Westerwalbesloh, Christoph, Coarse-graining bacteria colonies for modelling critical solute distributions in picolitre bioreactors for bacterial studies on single-cell level. Microbial Biotechnology 10 (4). , 2017
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2017 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2916519
Homogenizing bacterial cell factories: Analysis and engineering of phenotypic heterogeneity
Binder, Dennis, Homogenizing bacterial cell factories: Analysis and engineering of phenotypic heterogeneity. METABOLIC ENGINEERING 42 (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912503
Picoliter bioreactors for microbial consortia: From proof of concept to first application
Rudat, Annika, Picoliter bioreactors for microbial consortia: From proof of concept to first application. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912508
Microfluidic heterogeneity analysis of fluorescence-based gene expression of industrially relevant production strains on single-cell level
Burmeister, Alina, Microfluidic heterogeneity analysis of fluorescence-based gene expression of industrially relevant production strains on single-cell level. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912771
Microfluidic single-cell (co-)cultivation: Exploring the next dimension
Rudat, A., Microfluidic single-cell (co-)cultivation: Exploring the next dimension. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912759
Microfluidic Single-Cell Cultivation: A key for next generation bioprocess development?
Grünberger, Alexander, Microfluidic Single-Cell Cultivation: A key for next generation bioprocess development?. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912505
Microfluidic single-cell cultivation of S. lividans: Uncovering heterogeneity in filamentous growth
Sachs, Christian Carsten, Microfluidic single-cell cultivation of S. lividans: Uncovering heterogeneity in filamentous growth. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912502
Functionally-active protein aggregates - towards the realization of an enzyme cascade in catalytically-active inclusion bodies
Jäger, Vera D., Functionally-active protein aggregates - towards the realization of an enzyme cascade in catalytically-active inclusion bodies. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912507
Spatiotemporal analysis of synthetic microbial communities at the single-cell level in microfluidic interaction compartments
Rudat, Annika, Spatiotemporal analysis of synthetic microbial communities at the single-cell level in microfluidic interaction compartments. (). , 2017
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2017 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2912521
Real-time monitoring of fungal growth and morphogenesis at single-cell resolution
Grünberger, Alexander, Real-time monitoring of fungal growth and morphogenesis at single-cell resolution. Engineering in life sciences 17 (1). , 2017
PUB | DOI | WoS
 
2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912501
Catalytically active inclusion bodies. A novel carrier-free Enzyme Immobilisation method
Kloss, Ramona, Catalytically active inclusion bodies. A novel carrier-free Enzyme Immobilisation method. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912506
Integrated High-Throughput Platform for Microfluidic Live-Cell Analysis with Feed-Back Eyperimentation
Sachs, Christian Carsten, Integrated High-Throughput Platform for Microfluidic Live-Cell Analysis with Feed-Back Eyperimentation. (). , 2017
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2017 | Konferenzbeitrag | Veröffentlicht | PUB-ID: 2912518
Microfluidic device for control and sensing of dynamic oxygen levels during cell cultivation
Kaganovitch, Eugen, Microfluidic device for control and sensing of dynamic oxygen levels during cell cultivation. 20th International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2016) (). Red Hook, NY, 2017
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2017 | Sammelwerksbeitrag | Veröffentlicht | PUB-ID: 2912520
Application of Mini- and Micro-Bioreactors for Microbial Bioprocesses
Ladner, T., Application of Mini- and Micro-Bioreactors for Microbial Bioprocesses. Current Developments in Biotechnology and Bioengineering (). Amsterdam, 2017
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2017 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2912737
Taking control over microbial populations: Current approaches for exploiting biological noise in bioprocesses
Delvigne, Frank, Taking control over microbial populations: Current approaches for exploiting biological noise in bioprocesses. Biotechnology Journal 12 (7). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912504
Models for Developing and Optimizing Microscale Bacteria Cultivation
Westerwalbesloh, Christoph, Models for Developing and Optimizing Microscale Bacteria Cultivation. (). , 2017
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2017 | Kurzbeitrag Konferenz / Poster | PUB-ID: 2912509
Microfluidic cultivation chamber for the investigation of synthetic microbial co-cultures on single-cell level: From the development to first application
Rudat, Annika, Microfluidic cultivation chamber for the investigation of synthetic microbial co-cultures on single-cell level: From the development to first application. (). , 2017
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2016 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2912522
Image-Based Single Cell Profiling: High-Throughput Processing of Mother Machine Experiments
Sachs, Christian Carsten, Image-Based Single Cell Profiling: High-Throughput Processing of Mother Machine Experiments. PLoS one 11 (9). , 2016
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2016 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2912514
Comparative Single-Cell Analysis of Different E. coli Expression Systems during Microfluidic Cultivation
Binder, Dennis, Comparative Single-Cell Analysis of Different E. coli Expression Systems during Microfluidic Cultivation. PLoS one 11 (8). , 2016
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