IGEM:Cambridge/2008: Difference between revisions

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This year, the Cambridge iGEM team is working towards creating an integrated Bacterial Recombinant Artificial Intelligence Network (iBRAIN). Our concept is to model eukaryotic neural behaviour using populations of bacteria. We are looking at two main aspects of this concept: self-organisation using Turing pattern formation, and synaptic signal transduction using voltage output glutamate detection  
This year, the Cambridge iGEM team is working towards creating an integrated Bacterial Recombinant Artificial Intelligence Network (iBRAIN). Our concept is to model eukaryotic neural behaviour using populations of bacteria. We are looking at two main aspects of this concept: self-organisation using Turing pattern formation, and synaptic signal transduction using voltage output glutamate detection [[iGEM:Cambridge/2008/Concept | (read more...)]]
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[[iGEM:Cambridge/2008/Concept |<font style="color:#cccccc">(read more...)]]


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     <td width="370"><a href="http://openwetware.org/wiki/IGEM:Cambridge/2008/Notebook/Turing_Pattern_Formation" class="noborder"><img src="http://openwetware.org/images/9/9d/Signalling_button.gif" alt="Signalling" width="363" height="236"></a></td>
     <td width="370"><a href="http://openwetware.org/wiki/IGEM:Cambridge/2008/Notebook/Turing_Pattern_Formation" class="noborder"><img src="http://openwetware.org/images/9/9d/Signalling_button.gif" alt="Signalling" width="363" height="236"></a></td>
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[[IGEM:Cambridge/2008/PresentationOutline | <font face="verdana" style="color:#ffffff"> '''Poster & Presentation Outline''' </font>]]
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Latest revision as of 07:09, 26 October 2008


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This year, the Cambridge iGEM team is working towards creating an integrated Bacterial Recombinant Artificial Intelligence Network (iBRAIN). Our concept is to model eukaryotic neural behaviour using populations of bacteria. We are looking at two main aspects of this concept: self-organisation using Turing pattern formation, and synaptic signal transduction using voltage output glutamate detection </html> (read more...)

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   <td width="370"><a href="http://openwetware.org/wiki/IGEM:Cambridge/2008/Notebook/Turing_Pattern_Formation" class="noborder"><img src="http://openwetware.org/images/9/9d/Signalling_button.gif" alt="Signalling" width="363" height="236"></a></td>
   <td width="200"><a href="http://openwetware.org/wiki/IGEM:Cambridge/2008/Notebook/Bacillus"><img src="http://openwetware.org/images/8/8e/Bacillus_button.gif" alt="Bacillus" width="363" height="236"></a></td>
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  <td><a href="http://openwetware.org/wiki/IGEM:Cambridge/2008/Notebook/Voltage"><img src="http://openwetware.org/images/7/74/Voltage_button.gif" alt="Voltage" width="363" height="236"></a></td>
 <td><a href="http://openwetware.org/wiki/IGEM:Cambridge/2008/Notebook/Modelling"><img src="http://openwetware.org/images/9/91/Modelling_button.gif" alt="Modelling" width="363" height="236"></a></td>
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Poster & Presentation Outline


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