Team:KAIST Korea/Project Modeling
From 2012.igem.org
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<a href="#1st"><span id="tab"><b>Cell Growth Curve</b> </span></a> | <a href="#1st"><span id="tab"><b>Cell Growth Curve</b> </span></a> | ||
- | <a href="#2nd"><span id="tab"><b> | + | <a href="#2nd"><span id="tab"><b>Proof of concept</b></span></a> |
- | <a href="#3rd"><span id="tab"><b> | + | <a href="#3rd"><span id="tab"><b>Auto Regulation</b></span></a> |
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<li style="list-style-type:square;font-size:14px;font-weight:bold;">Mathematical model</li> | <li style="list-style-type:square;font-size:14px;font-weight:bold;">Mathematical model</li> | ||
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<li style="list-style-type:square;font-size:14px;font-weight:bold;">Mathematical model</li> | <li style="list-style-type:square;font-size:14px;font-weight:bold;">Mathematical model</li> |
Revision as of 16:28, 26 October 2012
2012 KAIST Korea
Mail : kaist.igem.2012@gmail.com
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Project : Modeling
Cell Growth Curve
Proof of concept
Auto Regulation
Modeling
Computational modeling of our project
Cell Growth Curve
Cell growth can be modeled using Logistic differential equation as shown below.
When we solve this equation with appropriate parameters(using MATLAB), we can get solution curve as shown below. This curve matches with our knowledge about cell growth.
Proof of concept
We also consider concentration of GFP/RFP of cell colony. The solution curve shown below represents that result.
- Mathematical model
- Parameter Sensitivity Analysis
Auto Regulation
- Mathematical model