We review recent work on the statistical mechanics of Von Neumann's growth model and discuss its application to cellular metabolic networks. In this context, we present a detailed analysis of the physiological scenario underlying optimality à la Von Neumann in the metabolism of the bacterium E. coli, showing that optimal solutions are characterized by a considerable microscopic flexibility accompanied by a robust emergent picture for the key physiological functions. This suggests that the ideas behind optimal economic growth in Von Neumann's model can be helpful in uncovering functional organization principles of cell energetics. © 2012 EDP Sciences and Springer.

Von Neumann's growth model: Statistical mechanics and biological applications / de Martino, A.; Marinari, E.; Romualdi, A.. - In: THE EUROPEAN PHYSICAL JOURNAL. SPECIAL TOPICS. - ISSN 1951-6355. - 212:1(2012), pp. 45-64. [10.1140/epjst/e2012-01653-8]

Von Neumann's growth model: Statistical mechanics and biological applications

de Martino A.;
2012

Abstract

We review recent work on the statistical mechanics of Von Neumann's growth model and discuss its application to cellular metabolic networks. In this context, we present a detailed analysis of the physiological scenario underlying optimality à la Von Neumann in the metabolism of the bacterium E. coli, showing that optimal solutions are characterized by a considerable microscopic flexibility accompanied by a robust emergent picture for the key physiological functions. This suggests that the ideas behind optimal economic growth in Von Neumann's model can be helpful in uncovering functional organization principles of cell energetics. © 2012 EDP Sciences and Springer.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2976737