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Wouter A van Winden

Showing results (1-10 of 28) with videos related to

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FEMS Yeast Research|February 18, 2009
Dynamic 13C-tracer study of storage carbohydrate pools in aerobic glucose-limited Saccharomyces cerevisiae confirms a rapid steady-state turnover and fast mobilization during a modest stepup in the glucose uptake rateFredrick O Aboka, Joseph J Heijnen, Wouter A van Winden
Biotechnology and Bioengineering|September 27, 2002
Correcting mass isotopomer distributions for naturally occurring isotopesWouter A van Winden, Christoph Wittmann, Elmar Heinzle, et al.
Biotechnology and Bioengineering|October 29, 2002
Cumulative bondomers: a new concept in flux analysis from 2D [13C,1H] COSY NMR dataWouter A van Winden, Joseph J Heijnen, Peter J T Verheijen
Metabolic Engineering|March 23, 2005
Determination of elasticities, concentration and flux control coefficients from transient metabolite data using linlog kineticsM T A Penia Kresnowati, Wouter A van Winden, Joseph J Heijnen
Metabolic Engineering|July 27, 2005
Application of metabolome data in functional genomics: a conceptual strategyLiang Wu, Wouter A van Winden, Walter M van Gulik, et al.
Biotechnology and Bioengineering|February 4, 2005
Dynamics of intracellular metabolites of glycolysis and TCA cycle during cell-cycle-related oscillation in Saccharomyces cerevisiaeChristoph Wittmann, Michael Hans, Wouter A van Winden, et al.
BMC Bioinformatics|December 23, 2006
A method for estimation of elasticities in metabolic networks using steady state and dynamic metabolomics data and linlog kineticsI Emrah Nikerel, Wouter A van Winden, Walter M van Gulik, et al.
The FEBS Journal|September 24, 2005
Revisiting the 13C-label distribution of the non-oxidative branch of the pentose phosphate pathway based upon kinetic and genetic evidenceRoelco J Kleijn, Wouter A van Winden, Walter M van Gulik, et al.
Metabolic Engineering|August 23, 2008
Model reduction and a priori kinetic parameter identifiability analysis using metabolome time series for metabolic reaction networks with linlog kineticsI Emrah Nikerel, Wouter A van Winden, Peter J T Verheijen, et al.
European Journal of Biochemistry|August 5, 2004
A new framework for the estimation of control parameters in metabolic pathways using lin-log kineticsLiang Wu, Weiming Wang, Wouter A van Winden, et al.
Pageof 3

Showing results (1-10 of 28) with videos related to

Sort By:
Pageof 3
FEMS Yeast Research|February 18, 2009
Dynamic 13C-tracer study of storage carbohydrate pools in aerobic glucose-limited Saccharomyces cerevisiae confirms a rapid steady-state turnover and fast mobilization during a modest stepup in the glucose uptake rateFredrick O Aboka, Joseph J Heijnen, Wouter A van Winden
Biotechnology and Bioengineering|September 27, 2002
Correcting mass isotopomer distributions for naturally occurring isotopesWouter A van Winden, Christoph Wittmann, Elmar Heinzle, et al.
Biotechnology and Bioengineering|October 29, 2002
Cumulative bondomers: a new concept in flux analysis from 2D [13C,1H] COSY NMR dataWouter A van Winden, Joseph J Heijnen, Peter J T Verheijen
Metabolic Engineering|March 23, 2005
Determination of elasticities, concentration and flux control coefficients from transient metabolite data using linlog kineticsM T A Penia Kresnowati, Wouter A van Winden, Joseph J Heijnen
Metabolic Engineering|July 27, 2005
Application of metabolome data in functional genomics: a conceptual strategyLiang Wu, Wouter A van Winden, Walter M van Gulik, et al.
Biotechnology and Bioengineering|February 4, 2005
Dynamics of intracellular metabolites of glycolysis and TCA cycle during cell-cycle-related oscillation in Saccharomyces cerevisiaeChristoph Wittmann, Michael Hans, Wouter A van Winden, et al.
BMC Bioinformatics|December 23, 2006
A method for estimation of elasticities in metabolic networks using steady state and dynamic metabolomics data and linlog kineticsI Emrah Nikerel, Wouter A van Winden, Walter M van Gulik, et al.
The FEBS Journal|September 24, 2005
Revisiting the 13C-label distribution of the non-oxidative branch of the pentose phosphate pathway based upon kinetic and genetic evidenceRoelco J Kleijn, Wouter A van Winden, Walter M van Gulik, et al.
Metabolic Engineering|August 23, 2008
Model reduction and a priori kinetic parameter identifiability analysis using metabolome time series for metabolic reaction networks with linlog kineticsI Emrah Nikerel, Wouter A van Winden, Peter J T Verheijen, et al.
European Journal of Biochemistry|August 5, 2004
A new framework for the estimation of control parameters in metabolic pathways using lin-log kineticsLiang Wu, Weiming Wang, Wouter A van Winden, et al.
Pageof 3