Team:Paris/Modeling
From 2008.igem.org
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[[Team:Paris/Modeling/BoB|Read more]] | [[Team:Paris/Modeling/BoB|Read more]] | ||
- | = | + | = Parameters Estimation Approach = |
- | + | This second approach was motivated by our will to understand our system in the most precise way. We decided to examine each part of our project (Oscillation, FIFO, Synchronization) incrementally, and tried to take into account the fundamental kinetics processes. | |
* We hereby use mostly Hill function, hence the name of this approach. We analyzed in the most precise fashion every interaction that took place. The Hill functions are introduced to describe relationships between transcription factors and promoters, since we thought secondary to take into acount the translation phases. | * We hereby use mostly Hill function, hence the name of this approach. We analyzed in the most precise fashion every interaction that took place. The Hill functions are introduced to describe relationships between transcription factors and promoters, since we thought secondary to take into acount the translation phases. | ||
- | * Let's go see our | + | * Let's go see our , which we would like to study as deeply as possible ! |
- | + | [[Team:Paris/Modeling/hill_approach|Read more]] | |
* What is at stake here is to determine the real parameters that govern the dynamics of our system. | * What is at stake here is to determine the real parameters that govern the dynamics of our system. | ||
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*** For each cell in the model, we could use such noised values for Vmax parameter, in order to reproduce randomness estimated in the wet lab. | *** For each cell in the model, we could use such noised values for Vmax parameter, in order to reproduce randomness estimated in the wet lab. | ||
- | [[Team:Paris/Modeling/Bibliography|Bibliographic References]] - [[Team:Paris/Modeling/Roadmap|Depreciated Roadmad]] | + | =[[Team:Paris/Modeling/Bibliography|Bibliographic References]] - [[Team:Paris/Modeling/Roadmap|Depreciated Roadmad]]= |
Revision as of 14:25, 27 August 2008
We had different approaches to model the biological system. We found interesting to explain at least two ways that we went throught. It is important to understand 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 allow us to use parameters and datas from scientific articles. The keys points of this approach:
Parameters Estimation ApproachThis second approach was motivated by our will to understand our system in the most precise way. We decided to examine each part of our project (Oscillation, FIFO, Synchronization) incrementally, and tried to take into account the fundamental kinetics processes.
Bibliographic References - Depreciated Roadmad |