Team:USTC-Software

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This is a template page. READ THESE INSTRUCTIONS.please wait...haven't finished!
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                        <div class="camera_caption fadeFromBottom"><em>Take a gNAP before wearing your gloves!<br/>Genetic Network Analyze and Predict</em></div>
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                        <div class="camera_caption fadeFromBottom"><em>The sketch and final GUI of gNAP!</em></div>
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                        <div class="camera_caption fadeFromBottom"><em>We compare the result of our software with gene expression profile in literature.</em></div>
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                        <div class="camera_caption fadeFromBottom"><em>We are USTC-Software!</em></div>
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<h2>Overall</h2>
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<p align="justify">Gene Network Analyze and Predict (gNAP) is a software which can model and analyze the change of new GRN constructing after exogenous gene’s import. What’s more, gNAP's reverse analysis based on global GRN gives some advise to experimenters before choosing the imported gene meeting their purpose.</p>
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You are provided with this team page template with which to start the iGEM season.  You may choose to personalize it to fit your team but keep the same "look." Or you may choose to take your team wiki to a different level and design your own wiki.  You can find some examples <a href="https://2009.igem.org/Help:Template/Examples">HERE</a>.
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<h2><span class="head">Software</span></h2>
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<p align="justify"><span style="font-family:Arial, Helvetica, sans-serif;">gNAP, gene network analyze and predict, is our main software which could analyze the input gene’s effects forward and reversely. gFinder, gene finder, is a website software which could find a specific gene in a database by gene’s function of regulation. gRNA, gene regulatory network analysts, is a small game which could improve the children’s ability of network analysis.<br/></span></p>
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<h2>Methodologies</h2>
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<p align="justify">In order to simulate the GRN’s working and analyze the changing after exogenous gene imported, some advanced algorithms and classical methods are employed in the software. These algorithms and methods include Binary Tree method, Needle-Wunsch Algorithm, Decision Tree method, Hill Equation and PSO Algorithm.</p>
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{|align="justify"
 
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|You can write a background of your team here.  Give us a background of your team, the members, etc.  Or tell us more about something of your choosing.
 
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|align="center"|[[Team:USTC-Software | Team USTC-Software]]
 
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!align="center"|[[Team:USTC-Software|Home]]
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<h2><span class="head">Communication</span></h2>
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!align="center"|[[Team:USTC-Software/Team|Team]]
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<p align="justify">Our team hope to create a better community for iGEM software, so we <a href="https://2013.igem.org/Team:USTC-Software/collaboration" id="homelink">collaborate</a> with other teams. Open source on github with detailed <a href="https://2013.igem.org/Team:USTC-Software/Project/Develop" id="homelink">API</a> of our source code make our software’s development more easy and convenient. What’s more, to <a href="https://2013.igem.org/Team:USTC-Software/Human_practice" id="homelink">popularize</a> iGEM in our campus, we also give “Hi” from iGEM to all the students and teachers and give their “Hello” back.</p>
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!align="center"|[https://igem.org/Team.cgi?year=2013&team_name=USTC-Software Official Team Profile]
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!align="center"|[[Team:USTC-Software/Project|Project]]
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    <a href="http://china.db.com/index_e.html"><img src='https://static.igem.org/mediawiki/2012/f/fc/USTC-Software-images-db-logo.png' /></a>
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    <a href="http://www.ustcif.org/default.php"><img src='https://static.igem.org/mediawiki/2012/d/d9/USTC-Software-images-ustcif-logo.png' /></a>
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    <a href="http://www.teach.ustc.edu.cn/"><img src='https://static.igem.org/mediawiki/2012/2/2d/USTC-Software-images-teaching-logo.png' /></a>
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    <a href="http://en.physics.ustc.edu.cn//"><img src='https://static.igem.org/mediawiki/2012/f/f5/USTC-Software-images-physics-logo.png' /></a>
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    <a href="http://en.biox.ustc.edu.cn/"><img src='https://static.igem.org/mediawiki/2012/2/27/USTC-Software-images-life-logo.png' /></a>
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Latest revision as of 14:26, 7 November 2013

Header2

Slide

Take a gNAP before wearing your gloves! Genetic Network Analyze and Predict
The sketch and final GUI of gNAP!
We compare the result of our software with gene expression profile in literature.
We are USTC-Software!

Home

Overall

Gene Network Analyze and Predict (gNAP) is a software which can model and analyze the change of new GRN constructing after exogenous gene’s import. What’s more, gNAP's reverse analysis based on global GRN gives some advise to experimenters before choosing the imported gene meeting their purpose.

Software

gNAP, gene network analyze and predict, is our main software which could analyze the input gene’s effects forward and reversely. gFinder, gene finder, is a website software which could find a specific gene in a database by gene’s function of regulation. gRNA, gene regulatory network analysts, is a small game which could improve the children’s ability of network analysis.

Methodologies

In order to simulate the GRN’s working and analyze the changing after exogenous gene imported, some advanced algorithms and classical methods are employed in the software. These algorithms and methods include Binary Tree method, Needle-Wunsch Algorithm, Decision Tree method, Hill Equation and PSO Algorithm.

Communication

Our team hope to create a better community for iGEM software, so we collaborate with other teams. Open source on github with detailed API of our source code make our software’s development more easy and convenient. What’s more, to popularize iGEM in our campus, we also give “Hi” from iGEM to all the students and teachers and give their “Hello” back.

Sponsors