Team:USTC-Software
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<img src="https://static.igem.org/mediawiki/2011/f/fd/USTC_Software_image_05.jpg" alt="image" width="363" class="fl_image" /> | <img src="https://static.igem.org/mediawiki/2011/f/fd/USTC_Software_image_05.jpg" alt="image" width="363" class="fl_image" /> | ||
- | <p><span lang="EN-US" xml:lang="EN-US"> | + | <p><span lang="EN-US" xml:lang="EN-US">Our project of this year is Lachesis, which provide functions including:</span></p> |
<div><span lang="EN-US" xml:lang="EN-US"> | <div><span lang="EN-US" xml:lang="EN-US"> | ||
- | + | <P>1、Automatically generating biological reaction network from assembly structure constructed by user.</P> | |
- | <P>1、Automatically generating | + | <p>2、Fitting a biological reaction network's parameters to experiment data or hand drawn curves.</p> |
- | <p> | + | <p>3、Evaluating the sensitivity and robustness of a biological reaction network.</p> |
- | <p>3、Evaluating the sensitivity of a | + | <p>4、Making biological reaction network easy to work with by the methods of visualization.</p> </span></div> |
- | <p>4、Making | + | |
<p class="em_text"><p class="intro"> <div class="button_01"> <a href="https://2011.igem.org/Team:USTC-Software/project">Details</a> </div> </p> </p> | <p class="em_text"><p class="intro"> <div class="button_01"> <a href="https://2011.igem.org/Team:USTC-Software/project">Details</a> </div> </p> </p> | ||
Revision as of 14:12, 5 October 2011
USTC-Software
Lachesis
Team
Our team is formed of a group of diligent students coming from various departments of USTC. In the School of Life Sciences, we devoted out perspiration to this project for nearly a year.
MoDeL
Biological reaction networks, even small ones, contain lot of species and reaction and, thus, are hard to build by hand. Our rule-based modeling approch aims at freeing human from such labor.
Human practice
We conducted a survey, during National Science Week, to discover USTC students' opinion on Synthetic Biology.
Project
Our project of this year is Lachesis, which provide functions including:
1、Automatically generating biological reaction network from assembly structure constructed by user.
2、Fitting a biological reaction network's parameters to experiment data or hand drawn curves.
3、Evaluating the sensitivity and robustness of a biological reaction network.
4、Making biological reaction network easy to work with by the methods of visualization.
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