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Monitoring Intracellular Metabolite Dynamics in Saccharomyces cerevisiae during Industrially Relevant Famine Stimuli, , , , , , , , , and 1 other author(s). Metabolites, 12 (3): 263 (2022)Performing in spite of starvation : How Saccharomyces cerevisiae maintains robust growth when facing famine zones in industrial bioreactors, , , and . Microbial biotechnology, 16 (1): 148-168 (2023)Bioprocess scale-up/down as integrative enabling technology: from fluid mechanics to systems biology and beyond, , , , and . Microbial biotechnology, 10 (5): 1267-1274 (2017)Decarbonizing ethanol production via gas fermentation: Impact of the CO/H2/CO2 mix source on greenhouse gas emissions and production costs., , , and . Comput. Chem. Eng., (2022)Predicting By-Product Gradients of Baker’s Yeast Production at Industrial Scale : a Practical Simulation Approach, , , and . Processes, 8 (12): 1554 (2020)Performing in spite of starvation: How Saccharomyces cerevisiae maintains robust growth when facing famine zones in industrial bioreactors, , , and . Microbial biotechnology, 16 (1): 148-168 (2022)Mimicked Mixing-Induced Heterogeneities of Industrial Bioreactors Stimulate Long-Lasting Adaption Programs in Ethanol-Producing Yeasts, , , and . Genes, 14 (5): 997 (2023)Monitoring Intracellular Metabolite Dynamics in Saccharomyces cerevisiae during Industrially Relevant Famine Stimuli, , , , , , , , , and . metabolites, (2022)A 9-pool metabolic structured kinetic model describing days to seconds dynamics of growth and product formation by Penicillium chrysogenum, , , , , , , , , and 1 other author(s). Biotechnology and bioengineering, 114 (8): 1733-1743 (2017)Grand Research Challenges for Sustainable Industrial Biotechnology, , , , , and . Trends in Biotechnology, 37 (10): 1042-1050 (2019)