Team:TU-Eindhoven/LEC/Modelling

From 2012.igem.org

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To achieve an accurate model, the influences of voltage-dependent calcium channels are added to a <span class = "lightblue">basic model for yeast calcium homeostasis</span>. In this model, first described by J. Cui <i>et al</i>, the main contributions of calcium transport are defined<html><a href="#ref_cui" name="text_cui"><sup>[3]</sup></a></html>.  
To achieve an accurate model, the influences of voltage-dependent calcium channels are added to a <span class = "lightblue">basic model for yeast calcium homeostasis</span>. In this model, first described by J. Cui <i>et al</i>, the main contributions of calcium transport are defined<html><a href="#ref_cui" name="text_cui"><sup>[3]</sup></a></html>.  
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[[Media:IGEM_TUeindhoven_-_Thesis_PJ_Alkema.pdf‎|Bachelor thesis]]
 
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In short, we formulated <span class = "lightblue">a new basic calcium model for yeast cells</span>. This model is extended with overexpression of voltage-dependent calcium channels and addition of GECO-kinetics. The model is made in <span class = "lightblue">MATLAB</span> and the code can be found [[Media:Model_iGEM_-_TU_Eindhoven_2012.zip|here]].
In short, we formulated <span class = "lightblue">a new basic calcium model for yeast cells</span>. This model is extended with overexpression of voltage-dependent calcium channels and addition of GECO-kinetics. The model is made in <span class = "lightblue">MATLAB</span> and the code can be found [[Media:Model_iGEM_-_TU_Eindhoven_2012.zip|here]].
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For a complete explanation of the model described on this page, please view the [[Media:IGEM_TUeindhoven_-_Thesis_PJ_Alkema.pdf‎|bachelor thesis of Petra Alkema]], one of our team members.
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Revision as of 13:46, 26 September 2012