Team:ETH Zurich
From 2013.igem.org
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<li><b><br>The Model</b><br><br>As our bio-game is based on processing the OHHL concentration in the non-mine colonies, the diffusion of OHHL in the agar is vital to the system. The diffusion was modeled by carrying out simulations to determine the time and distance of diffusion. In addition to OHHL diffusion, we modeled synthesis, regulation and degradation reactions of the proteins involved in our genetic circuits. To account for both processes: diffusion and reactions; we developed a spatio-temporal model in two dimensions comprised by three modules: mines, receivers, and the agar plate. Finite element methods were used to solve the system of partial differential equations (PDEs). | <li><b><br>The Model</b><br><br>As our bio-game is based on processing the OHHL concentration in the non-mine colonies, the diffusion of OHHL in the agar is vital to the system. The diffusion was modeled by carrying out simulations to determine the time and distance of diffusion. In addition to OHHL diffusion, we modeled synthesis, regulation and degradation reactions of the proteins involved in our genetic circuits. To account for both processes: diffusion and reactions; we developed a spatio-temporal model in two dimensions comprised by three modules: mines, receivers, and the agar plate. Finite element methods were used to solve the system of partial differential equations (PDEs). | ||
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<li><b><br>Experimental Results</b> | <li><b><br>Experimental Results</b> | ||
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<a href="/Team:ETH_Zurich/Project"><img src="https://static.igem.org/mediawiki/2013/b/b2/Colisweepercircuitfinal.png"/></a> | <a href="/Team:ETH_Zurich/Project"><img src="https://static.igem.org/mediawiki/2013/b/b2/Colisweepercircuitfinal.png"/></a> | ||
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Revision as of 09:02, 24 October 2013