Team:Grenoble/Modeling/Amplification/Quorum
From 2012.igem.org
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- | < | + | <h1>Cell to cell communication</h1> |
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- | Because of the temporal and special derivatives, we | + | Because of the temporal and special derivatives, we could not use a classic matlab solver to solve this set of equations. The approximation we used consisted in dividing the space into a grid: |
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<h1><img src="https://static.igem.org/mediawiki/2012/4/49/1_mod.png" alt="" />First visual simulation</h1> | <h1><img src="https://static.igem.org/mediawiki/2012/4/49/1_mod.png" alt="" />First visual simulation</h1> | ||
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- | Here we give a video, just in the goal to illustrate the diffusion, you can find the scripts here. We model the diffusion in a petri dish. We put a drop of cAMP in the middle of the dish, and we can check how it diffuses through the bacteria. What we can see on the video is the evolution of adenylate cyclase. We give the evolution of the system during 280 minutes. Here is the colors scale, representing the intensity of the signal: | + | Here we give a video, just in the goal to illustrate the diffusion, you can find the scripts here. We model the diffusion in a petri dish. We put a drop of cAMP in the middle of the dish, and we can check how it diffuses through the bacteria. What we can see on the video is the evolution of adenylate cyclase. We give the evolution of the system during 280 minutes. Here is the colors scale, representing the intensity of the signal, and the link to the video: |
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Latest revision as of 21:29, 26 September 2012