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q-bio.QM2026
Automated multi-dataset INST C metabolic flux analysis at microliter scale reveals robust fluxes but variable metabolite pools in
Jochen NieÃer, Anton Stratmann, Martin Beyà +3
Isotopically non-stationary metabolic flux analysis (INST C-MFA) provides unique insights into cellular physiology but is typically limited by low throughput and high experi…
q-bio.QM2026
Trans-dimensional Bayesian model averaging for C-based metabolic flux analysis: Evidence-based flux inference under structural model uncertainty
Johann F. Jadebeck, Anton Stratmann, Martin Beyà +1
Accurate quantification of intracellular metabolic fluxes is central to systems biology and biotechnology. Flux estimation relies on biochemical network models, with C metab…
q-bio.QM2025
13CFLUX -- Third-generation high-performance engine for isotopically (non)stationary 13C metabolic flux analysis
Anton Stratmann, Martin BeyÃ, Johann F. Jadebeck +2
13C-based metabolic flux analysis (13C-MFA) is a cornerstone of quantitative systems biology, yet its increasing data complexity and methodological diversity place high demands on…