Team:Paris/Modeling
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* Each step is taken into account at a fundamental kinetic processes level or at a more global level by a Hill function which is a simple way to take into account multiple interactions and more especially cooperative binding. | * Each step is taken into account at a fundamental kinetic processes level or at a more global level by a Hill function which is a simple way to take into account multiple interactions and more especially cooperative binding. | ||
- | <center> >> [[Team:Paris/Modeling/hill_approach| | + | <center> >> [[Team:Paris/Modeling/hill_approach|Explanations and description]]</center> |
* Specific experiments focused on finding relevant parameters have been designed and planned. | * Specific experiments focused on finding relevant parameters have been designed and planned. | ||
<center> >> [[Team:Paris/Modeling/estimation|Estimation]]</center> | <center> >> [[Team:Paris/Modeling/estimation|Estimation]]</center> | ||
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= Old but still usefull pages = | = Old but still usefull pages = |
Revision as of 15:56, 15 September 2008
We hereby propose different and complementary approaches to model the biological system. We found interesting to explain two of the paths that we chose to follow in order to understand and predict our system. It is important to note that both models aim at different goals in the process of understanding our system. BOB (Based On Bibliography) ApproachOur first approach is quite rough and simple but effective. The goal here was to guess the behavior of our Bacteri'OClock, considering the overall system. Since it is a preliminary approach, we could not yet fill the model with data from the wet lab. This is why our work is mainly based on a bibliographic work, which allows us to use parameters and data from scientific articles. The key points of this approach:
APE (APE Parameters Estimation) ApproachThe second approach was motivated by our will to characterize our system in the most precise way. What is at stake here is to determine the real parameters that govern the dynamics of our system.
Old but still usefull pages |