Team:Paris/Network analysis and design/System improvements
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{{Paris/Header|System Improvements}} | {{Paris/Header|System Improvements}} | ||
+ | {{Paris/Section_contents_analysis}} | ||
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+ | == Description == | ||
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+ | == Analysis == | ||
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Thus we further analize S2 for its capacity to generate ''synchrionized'' oscillations (using different initial concentrations and cell populations variability). | Thus we further analize S2 for its capacity to generate ''synchrionized'' oscillations (using different initial concentrations and cell populations variability). | ||
- | *Description | + | == Conclusion == |
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+ | == Navigation == | ||
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+ | *[[Team:Paris/Network_analysis_and_design/System_improvements/Description|Description]] | ||
- | *Analysis | + | *[[Team:Paris/Network_analysis_and_design/System_improvements/Analysis|Analysis]] |
- | *Conclusion | + | *[[Team:Paris/Network_analysis_and_design/System_improvements/Conclusions|Conclusion]] |
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Latest revision as of 00:42, 30 October 2008
System Improvements
Other pages:
DescriptionAnalysis
We need a 'delay' so we can: 1 add more genes to the circuit 2 use quorum sensing (qs) we chose quorum sensing that can allowed both 'delay' and population synchonization. two ways to add it:
we analyze both systems for their capacity to generate oscillations. S2 seems more promising. Thus we further analize S2 for its capacity to generate synchrionized oscillations (using different initial concentrations and cell populations variability). Conclusion
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