Title of article :
Modeling the topological organization of cellular processes
Author/Authors :
Giavitto، Jean-Louis نويسنده , , Michel، Olivier نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-148
From page :
149
To page :
0
Abstract :
The cell as a dynamical system presents the characteristics of having a dynamical structure. That is, the exact phase space of the system cannot be fixed before the evolution and integrative cell models must state the evolution of the structure jointly with the evolution of the cell state. This kind of dynamical systems is very challenging to model and simulate. New programming concepts must be developed to ease their modeling and simulation. In this context, the goal of the MGS project is to develop an experimental programming language dedicated to the simulation of this kind of systems. MGS proposes a unified view on several computational mechanisms (CHAM, Lindenmayer systems, Paun systems, cellular automata) enabling the specification of spatially localized computations on heterogeneous entities. The evolution of a dynamical structure is handled through the concept of transformation which relies on the topological organization of the system components. An example based on the modeling of spatially distributed biochemical networks is used to illustrate how these notions can be used to model the spatial and temporal organization of intracellular processes.
Keywords :
Computational models for cell simulation , Spatial organization , Topological collection , Rewriting , Dynamical systems with a dynamical structure
Journal title :
BioSystems
Serial Year :
2003
Journal title :
BioSystems
Record number :
47716
Link To Document :
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