Title of article
Phenomenological and molecular-level Petri net modeling and simulation of long-term potentiation
Author/Authors
S. Hardy، نويسنده , , P.N. Robillard، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
13
From page
26
To page
38
Abstract
Petri net-based modeling methods have been used in many research projects to represent biological systems. Among these, the hybrid functional Petri net (HFPN) was developed especially for biological modeling in order to provide biologists with a more intuitive Petri net-based method. In the literature, HFPNs are used to represent kinetic models at the molecular level. We present two models of long-term potentiation previously represented by differential equations which we have transformed into HFPN models: a phenomenological synapse model and a molecular-level model of the CaMKII regulation pathway. Through simulation, we obtained results similar to those of previous studies using these models. Our results open the way to a new type of modeling for systems biology where HFPNs are used to combine different levels of abstraction within one model. This approach can be useful in fully modeling a system at the molecular level when kinetic data is missing or when a full study of a system at the molecular level it is not within the scope of the research.
Keywords
modeling , Hybrid functional Petri net , Synaptic plasticity , Systems biology , simulation
Journal title
BioSystems
Serial Year
2005
Journal title
BioSystems
Record number
497653
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