Team:Oxford/biosensor

From 2014.igem.org

(Difference between revisions)
(Created page with "<html> <head> <meta name="generator" content="HTML Tidy for Linux (vers 25 March 2009), see www.w3.org"> <style type="text/css"> @import url(http://fonts.googleapis.com/cs...")
Line 265: Line 265:
<div style="background-color:#D9D9D9; opacity:0.7; z-index:5; margin-right:auto;margin-left:auto; Height:75px; width:60%;min-width:300px;font-size:65px;font-family:Helvetica;padding-top:5px; font-weight: 450;">
<div style="background-color:#D9D9D9; opacity:0.7; z-index:5; margin-right:auto;margin-left:auto; Height:75px; width:60%;min-width:300px;font-size:65px;font-family:Helvetica;padding-top:5px; font-weight: 450;">
-
<div style="background-color:white; opacity:0.7; Height:75px; width:100%;margin-top:5px:margin-bottom:5px;min-width:300px;font-size:65px;font-family:Helvetica;padding-top:5px; color:#596C8A; font-weight: 450;"><br>Characterisation</div>
+
<div style="background-color:white; opacity:0.7; Height:75px; width:100%;margin-top:5px:margin-bottom:5px;min-width:300px;font-size:65px;font-family:Helvetica;padding-top:5px; color:#596C8A; font-weight: 450;"><br>Biosensor</div>
</div>
</div>
 +
<div class="pink_news_block">
 +
<h1>Predicting the mCherry fluorescence</h1>
 +
To model the first double repression, we took the fact that we won’t need to know the amount of tetR in the system and used the assumption that ATC is effectively activating the expression of dcmR, albeit parameterised by different constants. This assumption should be justified by the fact that we will be able to precisely control the addition of ATC and we will be able to measure the fluorescence of the mCherry.
 +
<br>
 +
<br>
 +
We modelled this first step using both deterministic and stochastic models.
 +
</div>

Revision as of 14:22, 9 September 2014


Biosensor

Predicting the mCherry fluorescence

To model the first double repression, we took the fact that we won’t need to know the amount of tetR in the system and used the assumption that ATC is effectively activating the expression of dcmR, albeit parameterised by different constants. This assumption should be justified by the fact that we will be able to precisely control the addition of ATC and we will be able to measure the fluorescence of the mCherry.

We modelled this first step using both deterministic and stochastic models.