Biomod/2011/UTAustin/Hook'em Hybridizers: Difference between revisions

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*Team name: The Hook'em Hybridizers
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*Institution: The University of Texas at Austin
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*Team Members
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**Nadia Menouar
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**Ryan Truby
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**[[User:Ben_Braun|Ben Braun]]
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**Victor Kronberg
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**[[User:Jeremy R. McLain|Jeremy McLain]]
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**Nagina Naz
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**Marguerite West-Driga
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*Postdoc Mentors
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**Dr. Peter Allen
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**Dr. Xi Chen
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*Faculty mentors
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**[http://ellingtonlab.org/ Dr. Andrew Ellington]
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----
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The Hook'em Hybridizers front page was last edited by {{REVISIONUSER}}.
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[[Image:UTBiomodBanner2.png|780px]]
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[[Biomod/2011/UTAustin/Hook'em_Hybridizers | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''Home'''</span>  ]]
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<li>
[[Biomod/2011/UTAustin/Hook'em_Hybridizers:Rationale | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''Rationale'''</span> ]]
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[[Biomod/2011/UTAustin/Hook'em Hybridizers:Simulation | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''Simulation'''</span> ]]
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[[Biomod/2011/UTAustin/Hook'em Hybridizers:Methods | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''Methods'''</span> ]]
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<li>
[[Biomod/2011/UTAustin/Hook'em Hybridizers:Results | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''Results'''</span> ]]
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[[Biomod/2011/UTAustin/Hook'em Hybridizers:Tools | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''Tools'''</span> ]]
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<li>
[[Biomod/2011/UTAustin/Hook'em Hybridizers:People | <span style='font-size:16px; font-family: "trebuchet ms"; font-weight:bold; color:#FFFFFF; vertical-align: middle; text-decoration: none;'>'''People'''</span> ]]
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<div style="height: 30px; background-color: #3F70C3; padding: 10px 10px 10px;">
<span style="font-size: 20px; font-family: Verdana; color:#FFFFFF; vertical-align: middle;">Objective</span>
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<center>'''Counting Events with a DNA Processor'''</center>
 
A major goal in nanotechnology is the find useful forms of DNA computation. This broad definition includes amplifiers, logic gates, oscillators, structural manipulations, and many more forms of controlled responses. We believe an enzyme-free, DNA toehold exchange catalyzed system that preforms the computation of “counting” can be useful in various fields of biotechnology. Counting, by our definition, relies on two main principles. The first is the input that is being counted must be the same with each pulse and the second is the output of the counter must be independent of the input quantity or concentration. That is, regardless of the amount of input used, the counter must only reach completion after the specified number of counts, or pulses.
 
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<div style="height: 30px; width: 320px; text-align: left; float: right; margin-left: 5px;">
 
<div style="background-color: #3F70C3; padding: 10px 10px 10px;">
<span style="font-size: 20px; font-family: Verdana; color:#FFFFFF; vertical-align: middle;">The essence of a counter</span>
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<center>[[Image:Counteressence.png|300px]]</center>
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Latest revision as of 23:37, 2 November 2011

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Objective

Counting Events with a DNA Processor

A major goal in nanotechnology is the find useful forms of DNA computation. This broad definition includes amplifiers, logic gates, oscillators, structural manipulations, and many more forms of controlled responses. We believe an enzyme-free, DNA toehold exchange catalyzed system that preforms the computation of “counting” can be useful in various fields of biotechnology. Counting, by our definition, relies on two main principles. The first is the input that is being counted must be the same with each pulse and the second is the output of the counter must be independent of the input quantity or concentration. That is, regardless of the amount of input used, the counter must only reach completion after the specified number of counts, or pulses.

The essence of a counter

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