MP (Metabolic P) systems are a class of P systems introduced for modelling metabolic processes. We refer to the dynamical inverse problem as the problem of identifying (discrete) mathematical models exhibiting an observed dynamics. In this paper, we complete the definition of the algorithm LGSS (Log-gain Stoichiometric Stepwise regression) introduced in Manca and Marchetti (2011) for solving a general class of dynamical inverse problems. To this aim, we develop a reformulation of the classical stepwise regression in the context of MP systems. We conclude with a short review of two applications of LGSS for discovering the internal regulation logic of two phenomena relevant in systems biology.

Solving dynamical inverse problems by means of metabolic P systems / Manca, Vincenzo; Marchetti, Luca. - In: BIOSYSTEMS. - ISSN 0303-2647. - STAMPA. - 109:(2012), pp. 78-86. [10.1016/j.biosystems.2011.12.006]

Solving dynamical inverse problems by means of metabolic P systems

MARCHETTI, Luca
2012-01-01

Abstract

MP (Metabolic P) systems are a class of P systems introduced for modelling metabolic processes. We refer to the dynamical inverse problem as the problem of identifying (discrete) mathematical models exhibiting an observed dynamics. In this paper, we complete the definition of the algorithm LGSS (Log-gain Stoichiometric Stepwise regression) introduced in Manca and Marchetti (2011) for solving a general class of dynamical inverse problems. To this aim, we develop a reformulation of the classical stepwise regression in the context of MP systems. We conclude with a short review of two applications of LGSS for discovering the internal regulation logic of two phenomena relevant in systems biology.
2012
Manca, Vincenzo; Marchetti, Luca
Solving dynamical inverse problems by means of metabolic P systems / Manca, Vincenzo; Marchetti, Luca. - In: BIOSYSTEMS. - ISSN 0303-2647. - STAMPA. - 109:(2012), pp. 78-86. [10.1016/j.biosystems.2011.12.006]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/326072
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