Conference Proceedings

[1]

David A Fell, Mark G Poolman, and Albert Gevorgyan. Building and analysing genome-scale metabolic models. Biochem Soc Trans, 38(5):1197-1201, Oct 2010. [ DOI | http ]

[2]

A. E. Visser and D. A. Fell. Systems biology meets chromatin function. EMBO Rep., 8:446-450, 2007.

[3]

J. R. Chase, M. G. Poolman, and D. A. Fell. Oxidative stress induced by etoh affects the distribution of flux control in retinol oxidation: A simulation study. FASEB, 20:A958, 2006.

[4]

D. A. Fell. Metabolic control analysis: Connecting molecular mechanisms to cellular responses. J. Neurochem., 94 (Suppl. 2):74, 2005.

[5]

D. A. Fell, B. K. Bonde, and M. G. Poolman. The substructure of large metabolic networks. FEBS J., 272 (Suppl. 1):433, 2005.

[6]

D. A. Fell. Computer modelling of cell systems. Cytometry, Part A, 59A:61, 2004.

[7]

C. Brunold, P. Von Ballmoos, H. Hesse, D. Fell, and S. Kopriva. Interactions between sulfur, nitrogen and carbon metabolism. In J.-C. Davidian, D. Grill, L. J. De Kok, I. Stulen, M. J. Hawkesford, E. Schnug, and H. Rennenberg, editors, Sulfur Transport and Assimilation in Plants, pages 45-56, Leiden, 2003. Backhuys Publishers.

[8]

C. Chassagnole, E. Quentin, D. A. Fell, P. de Atauri, and J. P. Mazat. Dynamic simulation of pollutant effects on the threonine pathway in Escherichia coli. C. R. Biol., 326:501-508, 2003.

[9]

D. A. Fell and S. Thomas. Exercising control when control is distributed. In A. Cornish-Bowden and M. L. Cárdenas, editors, Technological and Medical Implications of Metabolic Control Analysis. Kluwer Academic Publishers, Dordrecht, 2000.

[10]

D. A. Fell and A. Wagner. Structural properties of metabolic networks: Implications for evolution and modelling of metabolism. In J.-H. S. Hofmeyr, J. M. Rohwer, and J. L. Snoep, editors, Animating the Cellular Map, pages 79-85, Stellenbosch, 2000. Stellenbosch University Press.

[11]

F. A. Brightman and D. A. Fell. Simulation of the epidermal growth factor signal transduction pathway. In C. Larsson, I.-L. Pahlman, F. E. Gustafsson, J. E. Wijker, and B. N. Kholodenko, editors, BioThermoKinetics in the Post-Genomics Era, pages 375-377. Chalmers University of Technology, Göteborg, 1998.

[12]

D. A. Fell and S. Thomas. Changes in enzyme expression and the control of metabolic flux. In C. Larsson, I.-L. Pahlman, F. E. Gustafsson, J. E. Wijker, and B. N. Kholodenko, editors, BioThermoKinetics in the Post-Genomics Era, pages 41-45. Chalmers University of Technology, Göteborg, 1998.

[13]

S. Schuster, D. A. Fell, T. Pfeiffer, T Dandekar, and P. Bork. Elementary modes analysis illustrated with human red cell metabolism. In C. Larsson, I.-L. Pahlman, F. E. Gustafsson, J. E. Wijker, and B. N. Kholodenko, editors, BioThermoKinetics in the Post-Genomics Era., pages 332-339. Chalmers University of Technology, Göteborg, 1998.

[14]

S. Thomas and D. A. Fell. Using co-response coefficients and sensitivity analysis to explore physiological flux control and metabolite concentration regulation. In C. Larsson, I.-L. Pahlman, F. E. Gustafsson, J. E. Wijker, and B. N. Kholodenko, editors, BioThermoKinetics in the Post-Genomics Era., pages 46-49. Chalmers University of Technology, Göteborg, 1998.

[15]

D. A. Fell and S. Thomas. The physiological control of flux. In H. V. Westerhoff, J. L. Snoep, F. E. Sluse, J. E. Wijker, and B. N. Kholodenko, editors, BioThermoKinetics of the Living Cell, pages 131-135. BioThermoKinetics Press, Amsterdam, 1996.

[16]

D. A. Fell and S. Thomas. Control analysis of carbohydrate metabolism. Biol. Chem., 377:S108, 1996.

[17]

S. Schuster, C. Hilgetag, J. H. Woods, and D. A. Fell. Elementary modes of functioning in biochemical networks. In R. Cuthbertson, M. Holcombe, and R. Paton, editors, Computation in Cellular and Molecular Biological Systems, pages 151-165, Singapore, 1996. World Scientific.

[18]

D. A. Fell. Design of experiments to measure elasticity coefficients. Biochem. Soc. Trans., 23:297S, 1995.

[19]

J. P. C. Moniz Barreto and D. A. Fell. Simulation of free radical reactions: a multi-compartment Monte Carlo approach. Biochem. Soc. Trans., 23:298S, 1995.

[20]

S. Thomas and D. A. Fell. Error and bias in control coefficients calculated from elasticities. Biochem. Soc. Trans., 23(2):294S, 1995.

[21]

J. P. C. Moniz Barreto, J. H. Woods, and D. A. Fell. Object-oriented biochemical simulation: a Monte Carlo method is applied to systems of dioxygen free radical reactions. In E. Gnaiger, F. N. Gellerich, and M. Wyss, editors, Modern Trends in Biothermokinetics., volume 3, page 115. Innsbruck University Press, Innsbruck., 1994.

[22]

H. M. Sauro and D. A. Fell. Analysers and simulators: a brief description of two computer programs SCAMP and iMAP. In H. V. Westerhoff, editor, BioThermoKinetics,, pages 213-223. Intercept, Andover., 1994.

[23]

S. Schuster, C. Hilgetag, and D. A. Fell. Detecting elementary modes of functioning in metabolic networks. In E. Gnaiger, F. N. Gellerich, and M. Wyss, editors, Modern Trends in Biothermokinetics., volume 3, pages 103-105. Innsbruck University Press, Innsbruck., 1994.

[24]

S. Thomas and D. A. Fell. Error and bias in control coefficient values as a consequence of the non-linearity of matrix method equations. In E. Gnaiger, F. N. Gellerich, and M. Wyss, editors, Modern Trends in Biothermokinetics., volume 3, pages 110-111, Innsbruck., 1994. Innsbruck University Press.

[25]

S. Thomas and D. A. Fell. MetaCon - a program for the algebraic evaluation of control coefficients of arbitary metabolic networks. In H. V. Westerhoff, editor, BioThermoKinetics,, pages 225-229. Intercept, Andover., 1994.

[26]

J. H. Woods and D. A. Fell. BioThermoKinetics and the Internet. In E. Gnaiger, F. N. Gellerich, and M. Wyss, editors, Modern Trends in Biothermokinetics., volume 3, pages 311-312. Innsbruck University Press, Innsbruck., 1994.

[27]

D. A. Fell. The analysis of flux in substrate cycles. In S. Schuster, M. Rigoulet, R. Ouhabi, and J.-P. Mazat, editors, Modern Trends in Biothermokinetics, volume 2, pages 97-101, New York, 1993. Plenum Press.

[28]

D. A. Fell. The analysis of flux in substrate cycles. Biochem. Soc. Trans., 21:257S, 1993.

[29]

D. B. Kell, H. V. Westerhoff, D. A. Fell, S. Thomas, and P. Mendes. Demonstration programs illustrating the modelling of metabolic systems. Binary, 5:47-49, 1993.

[30]

J. P. C. Moniz Barreto and D. A. Fell. Simulation of dioxygen free radical reactions. Biochem. Soc. Trans., 21:256S, 1993.

[31]

S. Thomas and D. A. Fell. MetaCon - a program for the algebraic evaluation of control coefficients of arbitary metabolic networks. In S. Schuster, M. Rigoulet, R. Ouhabi, and J.-P. Mazat, editors, Modern Trends in Biothermokinetics., volume 2, pages 473-478, New York, 1993. Plenum Press.

[32]

D. A. Fell and H. M. Sauro. Metabolic Control Analysis by computer: Progress and prospects. Biomed. Biochim. Acta, 49:811-816, 1990.

[33]

D. A. Fell, H. M. Sauro, and J. R. Small. Control coefficients and the matrix method. In A. Cornish-Bowden and M. L. Cárdenas, editors, Control of Metabolic Processes, pages 139-148, New York, 1990. Plenum Press.

[34]

D. A. Fell, H. M. Sauro, and J. R. Small. Le calcul des coefficients de contrôle par l'algèbre matricielle. In Mazat and C. 35].

[35]

J. P. Mazat and Reder C., editors. Le Contrôle du Métabolisme. Université de Bordeaux II, Bordeaux., 1988.

[36]

H. M. Sauro and D. A. Fell. The role of cooperativity in metabolism. Biochem. Soc. Trans., 15:234-235, 1987.

[37]

J. R. Small and D. A. Fell. Responses of metabolic systems: Application of control analysis to yeast. Biochem. Soc. Trans., 12:238, 1987.

[38]

D. A. Fell and H. M. Sauro. Non-equilibrium / equilibrium reactions: which controls? Biochem. Soc. Trans., 14:624-625, 1986.

[39]

D. A.and Small J. R. Fell. Theoretical aspects of covalent modification in metabolic control. Biochem. Soc. Trans., 14:623-624, 1986.

[40]

D. A. Fell and H. M. Sauro. Substrate cycles: Do they really cause amplification? Biochem. Soc. Trans., 13:762-763, 1985.


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Conference Proceedings

None: Publications/Proc (last edited 2011-07-27 14:30:33 by david)