Team:USTC-China/modeling/motion-ctrl

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            <a href="#panel">Modeling</a>
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                    Color Imaging
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                    Motion Control
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                    Motion Measurement
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                  <a href="https://2014.igem.org/Team:USTC-China/modeling/conjugation">
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                    Conjugation Modeling
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                  <a href="https://2014.igem.org/Team:USTC-China/modeling/cimager">
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                    C. imager Simulation
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    <div class="title"><h1>Motion Control</h1>
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      <dl class="sub-nav">
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    <dd data-magellan-arrival="dgradgrbcircuit"><a href="#dgradgrbcircuit">Gene Circuits</a></dd>
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  <dd data-magellan-arrival="hfiahfsjcircuit"><a href="#hfiahfsjcircuit">HfiA/HfsJ</a></dd>
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  <dd data-magellan-arrival="abm"><a href="#abm">ABM</a></dd>
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    <p>To control the motion of C.crescentus, we firstly constructed the basic circuits, then we built a agent-based modeling with visualization in. What's more, we also started a new web-based modeling framework.</p>
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    <a name="dgradgrbcircuit"></a>
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    <h2 data-magellan-destination="dgradgrbcircuit">Gene Circuits</h2>
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        <p>We've constructed several modeling skeleton in Matlab Simbiology Package, they are:</p>
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         <h1 id="students">Students</h1>
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         <ol>
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        <li>DgrA/DgrB Circuit in regulating the flagellum movement  </li>
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        <li>HfiA/HfsJ Circuit in regulating the genesis of composing substances holdfast.</li>
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        </ol>
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        <h3>DgrA/DgrB Circuit</h3>
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        <p>You can get some basic information from <a href="https://2014.igem.org/Team:USTC-China/project/cimager">the project part</a>, we will get a brief illustration.</p>
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        <p><img src="https://static.igem.org/mediawiki/2014/6/6f/DgrAB.png" class="th"/></p>
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        <p>After some analysis, we constructed a rudimentary gene. </p>
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        <img src="https://static.igem.org/mediawiki/2014/0/02/DgrAB2.png" class="th"/>
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        <h4 id="equations">Equations</h4>
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          <li><span class="list-item">Name</span>Dong Bo</li>
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          <li><span class="list-item">Code Name</span> Stark</li>
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          <li><span class="list-item">Age</span>21</li>
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          <li><span class="list-item">Discipline</span>Biosciences</li>
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          <li><span class="list-item">Hobbies</span>Everything</li>
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          <li><span class="list-item">How many years have you been taking part in iGEM</span>2 years</li>
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          <li><span class="list-item">Distributions</span>Team Leader</li>
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          <li><span class="list-item">The most memorable moment this year</span> maybe on the corner</li>
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          <li><span class="list-item">The upsetest moment this year</span>We have to give up some fantastic ideas.</li>
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          <li><span class="list-item">Words for our team </span> We are One Piece!</li>
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        <p>$\frac{d([cdiGMP-DgrA])}{dt} = \frac{(Ka \cdot [cdiGMP] \cdot DgrA - Kf \cdot [cdiGMP-DgrA] \cdot FliL - [Kd_{cdiGMP-DgrA}] \cdot [cdiGMP-DgrA])}{cell}$</p>
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         <p>$\frac{d([cdiGMP-DgrB])}{dt} = \frac{(Kb \cdot [cdiGMP] \cdot DgrB - [Kd_{cdiGMP-DgrB}] \cdot [cdiGMP-DgrB])}{cell}$</p>
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          <li><span class="list-item">Name</span> Que HUANG</li>
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          <li><span class="list-item">Code Name</span> Thumbelina</li>
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          <li><span class="list-item">Age</span> 21</li>
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          <li><span class="list-item">Discipline</span> Chemistry</li>
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          <li><span class="list-item">Hobbies</span> Swimming</li>
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          <li><span class="list-item">How many years have you been takeing part in iGEM</span> 2 years</li>
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          <li><span class="list-item">Distributions</span>Designer</li>
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          <li><span class="list-item">The most memorable moment this year</span> Our team was registered successfully.</li>
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          <li><span class="list-item">The most upset moment this year</span> Our visa cases are undergoing administrative processing.</li>
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          <li><span class="list-item">Words for our team:</span> Enjoy the Giant Jamboree! </li>
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        <p>$\frac{d(FliL)}{dt} = \frac{(-Kf \cdot [cdiGMP-DgrA] \cdot FliL + Kg_{FliL})}{cell}$</p>
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         <p>$\frac{d([cdiGMP-DgrA-FliL])}{dt} = \frac{(Kf \cdot [cdiGMP-DgrA] \cdot FliL)}{cell}$</p>
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          <li><span class="list-item">Name</span> YICONG DENG</li>
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          <li><span class="list-item">Code Name</span> congsama</li>
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          <li><span class="list-item">Age</span> 20</li>
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          <li><span class="list-item">Discipline</span> Biology Science</li>
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          <li><span class="list-item">Hobbies</span> Dota,sports</li>
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          <li><span class="list-item">How many years have you been taking part in iGEM</span> 2 years</li>
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          <li><span class="list-item">Distributions</span> experiment</li>
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          <li><span class="list-item">The most memorable moment this year</span> Our team was registered successfully.</li>
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          <li><span class="list-item">The most upset moment this year </span> Experience lots of failure in lab.</li>
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          <li><span class="list-item">Words for our team</span> Enjoy the Jamboree! </li>
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        <h4 id="results">Results</h4>
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        <p>The fellowing pictures simulated the change of [FliL] and [cdiGMP-DgrB] with time. We can read that with upstream signals, the concentration of protein related to the flagellum functions does change.</p>
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        <img src="https://static.igem.org/mediawiki/2014/d/d5/DgrAB3.png" class="th"/>
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        <a name="hfiahfsjcircuit"></a>
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       <h3 data-magellan-destination="hfiahfsjcircuit">HfiA/HfsJ Circuit<h3>
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         <p>From our project design, we can get: Upstream promoter Expression Rate $\rightarrow$ HfiA $\rightarrow$ HfsJ $\rightarrow$ Catalyzing Rate</p>
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        <img src="https://static.igem.org/mediawiki/2014/d/df/Ustc-people-3.jpg" class="th" />
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        <p>So, we contracted another gene. </p>
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          <li><span class="list-item">Name</span> Juntao Yu</li>
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          <li><span class="list-item">Code Name</span> Taotao</li>
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          <li><span class="list-item">Age</span> 19</li>
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          <li><span class="list-item">Discipline</span> Biology</li>
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          <li><span class="list-item">Hobbies</span> Photography, piano, traveling</li>
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          <li><span class="list-item">How many years have you been taking part in iGEM</span> 1 year</li>
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          <li><span class="list-item">Distributions</span> experiment, wiki, presentation</li>
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          <li><span class="list-item">The most memorable moment this year</span> The meet up in Taiwan. iGEM provided me a chance to communicate with guys who love biology or future biologists. We introduced and shared our worked, and also we learned much from them. Incredibly amazing!</li>
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          <li><span class="list-item">The most upset moment this year </span> Learning while doing experiment and finishing much homework freaks me out!</li>
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          <li><span class="list-item">Words for our team</span> It's now or never, guys! </li>
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        <h4 id="equations">Equations</h4>
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         <p>$\frac{d(P_{HfiA})}{dt} = -\frac{Vm_{HfiA} \cdot X^n_{HfiA}/(Kp_{HfiA}+X^n_{HfiA})}{cell}$</p>
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          <li><span class="list-item">Name</span> Fangming Xie</li>
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          <li><span class="list-item">Code Name</span> Sandy</li>
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          <li><span class="list-item">Discipline</span> Condensed Matter Physics </li>
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          <li><span class="list-item">Hobbies</span> Swimming, Playing Ping-Pong</li>
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          <li><span class="list-item">How many years have you been taking part in iGEM</span> 1 year</li>
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          <li><span class="list-item">Distributions</span> Modeling, Wiki Editing</li>
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          <li><span class="list-item">The most memorable moment this year</span> get to know some great team members</li>
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          <li><span class="list-item">The MOST UPSET moment this year</span> Could not head for MIT to attend the final jamboree personally. </li>
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          <li><span class="list-item">Words for our team</span> Colorful, Clear &amp; Compact. The conclusion of our project, I feel like, somehow concluded this memorable year working with you guys.</li>
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        <p>$\frac{d([X-P_{HfiA}])}{dt} = \frac{Vm_{HfiA} \cdot X^n_{HfiA}/(Kp_{HfiA}+X^n_{HfiA}) - Kd_{c1 }cdot [X-P_{HfiA}]}{cell}$</p>
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    <div class="row">
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         <p>$\frac{d(mRNA_{HfiA})}{dt} = \frac{Ktc_{HfiA} \cdot P_{HfiA} - Kd_{mRNA_{HfiA}} \cdot mRNA_{HfiA} }{cell}$</p>
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      <h3 id="zoey"></h3>
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          <li><span class="list-item">Name</span> Jie Zhou</li>
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          <li><span class="list-item">Code Name</span> Zoey</li>
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          <li><span class="list-item">Age</span> 21</li>
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          <li><span class="list-item">Discipline</span> Materials Science and Engineering</li>
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          <li><span class="list-item">Hobbies</span> Playing the cello</li>
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          <li><span class="list-item">How many years have you been taking part in iGEM</span> 1 year</li>
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          <li><span class="list-item">Distributions</span> Experiment</li>
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          <li><span class="list-item">The most memorable moment this year</span> Having learnt a lot about synthetic biology.</li>
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          <li><span class="list-item">The most upset moment this year</span>  Being absent from the Giant Jamboree. </li>
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          <li><span class="list-item">Words for our team</span> Try our best in the Giant Jamboree! </li>
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         <p>$\frac{d(HfiA)}{dt} = \frac{Ktl_{HfiA} \cdot mRNA_{HfiA} - Kd_{HfiA} \cdot HfiA - Kc \cdot HfiA \cdot HfsJ}{cell}$</p>
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      <h3 id="stokes"></h3>
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          <li><span class="list-item">Name</span> Shiwei Wang</li>
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          <li><span class="list-item">Code Name</span> Stokes</li>
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          <li><span class="list-item">Age21</span></li>
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          <li><span class="list-item">Discipline</span> Biosciences</li>
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          <li><span class="list-item">Hobbies</span> Playing Ping-Pong</li>
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          <li><span class="list-item">How many years have you been taking part in iGEM</span>2 years</li>
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          <li><span class="list-item">Distributions</span> Experiment</li>
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          <li><span class="list-item">The most memorable moment this year</span> have a chance to MIT</li>
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          <li><span class="list-item">The most upset moment this year </span>the experiment failed</li>
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          <li><span class="list-item">Words for our team</span> We all knew all along that at some point the competition was going to end, but the good memories and friendship will never die.</li>
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         <p>$\frac{d(P_{HfsJ})}{dt} = \frac{-Vm_{HfsJ} \cdot P_{HfsJ}^n{_{HfsJ}}/(Kp_{HfsJ}+P_{HfsJ}^{n_{HfsJ}})}{cell}$</p>
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          <li><span class="list-item">Name</span> Zhen Zhang</li>
+
-
          <li><span class="list-item">Code Name</span> izgzhen (Github Codename)</li>
+
-
          <li><span class="list-item">Age</span> 20</li>
+
-
          <li><span class="list-item">Discipline</span> Computer Science</li>
+
-
          <li><span class="list-item">Hobbies</span> Play with computer, dance with people</li>
+
-
          <li><span class="list-item">How many years have you taken part in iGEM</span> One year</li>
+
-
          <li><span class="list-item">Distributions</span> I do modeling work, in which I code the Matlab instances and SciPy Code. And I am also web-designer of wiki site, who do care a lot about HTML and CSS.</li>
+
-
          <li><span class="list-item">The most memorable moment this year</span> The moment of going out with teammates.</li>
+
-
          <li><span class="list-item">The upset moment this year</span> When the teamwork is postponed.</li>
+
-
          <li><span class="list-item">Words for our team</span> Good luck, USTC!</li>
+
-
        </ul>
+
-
      </div>
+
-
    </div>
+
-
    <div class="row">
+
         <p>$\frac{d([CtrA-P_{HfsJ}])}{dt} = \frac{Vm_{HfsJ} \cdot P_{HfsJ}^n{_{HfsJ}}/(Kp_{HfsJ}+P_{HfsJ}^{n_{HfsJ}}) - Kd_{c2 }cdot [CtrA-P_{HfsJ}]}{cell}$</p>
-
      <h3 id="paggleg"></h3>
+
-
      <div class="small-4 columns">
+
-
         <img src="https://static.igem.org/mediawiki/2014/2/27/Ustc-people-18.jpg" class="th" />
+
-
      </div>
+
-
      <div class="small-8 columns">
+
-
        <ul class="no-bullet">
+
-
          <li><span class="list-item">Name</span> Gen Li</li>
+
-
          <li><span class="list-item">Code Name</span> Paggleg</li>
+
-
          <li><span class="list-item">Age19</span></li>
+
-
          <li><span class="list-item">Discipline</span> Biosciences</li>
+
-
          <li><span class="list-item">Hobbies</span> photography</li>
+
-
          <li><span class="list-item">How many years have you been taking part in iGEM</span> 1 years</li>
+
-
          <li><span class="list-item">Distributions</span> Experiment</li>
+
-
          <li><span class="list-item">The most memorable moment this year a plan was made out</li>
+
-
          <li><span class="list-item">The most upset moment this year</span> be told unable to get a signal peptide we need</li>
+
-
          <li><span class="list-item">Words for our team</span> let god guide us</li>
+
-
        </ul>
+
-
      </div>
+
-
    </div>
+
-
    <div class="row">
+
         <p>$\frac{d(mRNA_{HfsJ})}{dt} = \frac{Ktc_{HfsJ} \cdot [CtrA-P_{HfsJ}] - Kd_{mRNA_{HfsJ}} \cdot mRNA_{HfsJ}}{cell}$</p>
-
      <h3 id="zaicing"></h3>
+
-
      <div class="small-4 columns">
+
-
         <img src="https://static.igem.org/mediawiki/2014/f/fb/Ustc-people-4.jpg" class="th" />
+
-
      </div>
+
-
      <div class="small-8 columns">
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-
        <ul class="no-bullet">
+
-
          <li><span class="list-item">Name</span> Jicheng HUANG</li>
+
-
          <li><span class="list-item">Code Name</span> Zaicing</li>
+
-
          <li><span class="list-item">Age</span>19</li>
+
-
          <li><span class="list-item">Discipline</span> Biology</li>
+
-
          <li><span class="list-item">Hobbies</span> Logistics</li>
+
-
          <li><span class="list-item">How many years have you taken part in iGEM</span> Only one year</li>
+
-
          <li><span class="list-item">Distributions</span> Logistics undertaken mainly, branch experiment accomplished.</li>
+
-
          <li><span class="list-item">The most memorable moment this year</span> Joined the iGEM Conference at NCTU, Formosa.</li>
+
-
          <li><span class="list-item">The upset moment this year</span> Some results didn't come out expectedly, experiments failed.</li>
+
-
          <li><span class="list-item">Words for our team</span> Cherish the beings, Cherish the gones. Nice to have been with you all.</li>
+
-
        </ul>
+
-
      </div>
+
-
    </div>
+
-
  </div>
+
-
  <div class="row">
+
         <p>$\frac{d(HfsJ)}{dt} = \frac{Ktl_{HfsJ} \cdot mRNA_{HfsJ} - Kd_{HfsJ} \cdot HfsJ - Kc \cdot HfiA \cdot HfsJ - Kf \cdot HfsJ \cdot Sub-Kr \cdot EzCom + Kcat \cdot EzCom}{cell}$</p>
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/2/21/Ustc-people-new-2.jpg" class="th" />
+
-
    </div>
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-
    <div class="small-8 columns">
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-
      <ul class="no-bullet">
+
-
         <li><span class="list-item">Name:</span> Sun He</li>
+
-
        <li><span class="list-item">Code Name</span> : Sun He</li>
+
-
        <li><span class="list-item">Age</span> : 21</li>
+
-
        <li><span class="list-item">Discipline</span> : Chemical Physics</li>
+
-
        <li><span class="list-item">Hobbies</span> : Reading</li>
+
-
        <li><span class="list-item">How many years have you taken part in iGEM:</span> One year</li>
+
-
        <li><span class="list-item">Distributions</span> : Graphic Designer</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> : Went to Formosa with teammates. </li>
+
-
        <li><span class="list-item">The upsetest moment this year</span> : Can't fall asleep at midnight. </li>
+
-
        <li><span class="list-item">Words for our team</span> : We can if we want.</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
        <p>$\frac{d([HfiA-HfsJ])}{dt} = \frac{Kc \cdot HfiA \cdot HfsJ}{cell}$</p>
-
  <div class="row">
+
         <p>$\frac{d(Sub)}{dt} = \frac{-Kf \cdot HfsJ \cdot Sub-Kr \cdot EzCom}{cell}$</p>
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/7/72/Ustc-people-2.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
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      <ul class="no-bullet">
+
-
         <li><span class="list-item">Name:</span> Honda Jiang</li>
+
-
        <li><span class="list-item">Code Name</span> : Honda</li>
+
-
        <li><span class="list-item">Discipline</span> : Condensed Matter Physics (Major)</li>
+
-
        <li><span class="list-item">Hobbies</span> : Reading and football</li>
+
-
        <li><span class="list-item">How many years have you taken part in iGEM: 1year</li>
+
-
        <li><span class="list-item">Distributions</span> : Modelling</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> : attended the 2ed iGEM  conference in Taiwan with teammates.</li>
+
-
        <li><span class="list-item">The MOST UPSET moment this year</span> : My computer  crashed.</li>
+
-
        <li><span class="list-item">Words for our team</span> :One  team one dream. Let's make it colorful!</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
        <p>$\frac{d(Pro)}{dt} = \frac{Kcat \cdot EzCom}{cell}$</p>
-
  <div class="row">
+
        <p>$\frac{d(EzCom)}{dt} = \frac{Kf \cdot HfsJ \cdot Sub-Kr \cdot EzCom - Kcat \cdot EzCom}{cell}$</p>
-
    <h3 id="izgzhen"></h3>
+
        </section>
-
    <div class="small-4 columns">
+
        <h4 id="results">Results</h4>
-
      <img src="https://static.igem.org/mediawiki/2014/8/82/Ustc-people-7.jpg" class="th" />
+
        <p>We conducted a sensitive analysis here. We can see that the increased concentration of $X$ has a suppressing effect on the protein catalyst rate. </p>
-
    </div>
+
        <img src="https://static.igem.org/mediawiki/2014/b/b0/Hfi2.png" class="th"/>
-
    <div class="small-8 columns">
+
         <img src="https://static.igem.org/mediawiki/2014/a/a2/Hfi3.png" class="th"/></p>
-
      <ul class="no-bullet">
+
-
         <li><span class="list-item">Name:</span> Wenhao Yang</li>
+
-
        <li><span class="list-item">Code Name</span> : Eaton</li>
+
-
        <li><span class="list-item">Discipline</span> : Information Science</li>
+
-
        <li><span class="list-item">Hobbies</span> : DIY inventions</li>
+
-
        <li><span class="list-item">How many years have you taken part in iGEM:</span> 1year</li>
+
-
        <li><span class="list-item">Distributions</span> :Wet Experiment</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> : get my first genetically engineered cell.</li>
+
-
        <li><span class="list-item">The MOST UPSET moment this year</span> : no result in the experiment.</li>
+
-
        <li><span class="list-item">Words for our team</span> : Wish we happy!</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
      <a name="ABM and Visualization"></a>
 +
      <h2 data-magellan-destination="abm">abm</h2>
-
  <div class="row">
+
      <p>Compared to traditional modeling methods, such as ODE, PDE and many others, the <a href="http://en.wikipedia.org/wiki/Agent-based_model">Agent-Based Modeling (ABM)</a> is based on the modeling of individual behaviors.</p>
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/6/6c/Ustc-people-6.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span> Yucan Peng</li>
+
-
        <li><span class="list-item">Code Name</span> : Candy</li>
+
-
        <li><span class="list-item">Age</span> : 20</li>
+
-
        <li><span class="list-item">Discipline</span> : Materials Science and Engineering </li>
+
-
        <li><span class="list-item">Hobbies</span> : Calligraphy&drawing</li>
+
-
        <li><span class="list-item">How many years have you been taking part in iGEM:</span> 1 year</li>
+
-
        <li><span class="list-item">Distributions</span> : Experiment</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> : Performing experiments with teammates. </li>
+
-
        <li><span class="list-item">The most upset moment this year</span> :  Being absent from the Giant Jamboree. </li>
+
-
        <li><span class="list-item">Words for our team</span> : We will make it! </li>
+
-
      </ul>
+
<p>In ABM, the agent chooses his next step based on the surrounding circumstance. The most intriguing part of ABM is that the overall phenomenon emerges from a large collection of agents. This gives us the opportunity to discover something beyond the scope of traditional modeling methods.</p>
-
    </div>
+
-
  </div>
+
 +
<p>So In our ABM part, we aimed at:</p>
-
  <div class="row">
+
<ol>
-
    <h3 id="izgzhen"></h3>
+
<li>Give a comprehensive analysis of the artificial system</li>
-
    <div class="small-4 columns">
+
<li>Discover fresh new characteristics</li>
-
      <img src="https://static.igem.org/mediawiki/2014/7/7b/Ustc-people-11.jpg" class="th" />
+
<li>Visualize the collective behaviors of many cells</li>
-
    </div>
+
</ol>
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span>Tao Zui</li>
+
-
        <li><span class="list-item">Code name</span> :taozuey</li>
+
-
        <li><span class="list-item">Age</span> :19</li>
+
-
        <li><span class="list-item">Discipline</span> :Physics</li>
+
-
        <li><span class="list-item">Hobbies</span> : swimming, badminton</li>
+
-
        <li><span class="list-item">Distributions</span> : modelling</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> :see C.crescentus through micorscope.</li>
+
-
        <li><span class="list-item">the most upset moment this year</span> : realizing the data collected was wrong.</li>
+
-
        <li><span class="list-item">words for our team</span> :We did dance like no one's watching</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
-
  <div class="row">
+
      <h3 id="netlogoprototype">NetLogo Prototype</h3>
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/f/f6/Ustc-people-13.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span>Wang Zeguan</li>
+
-
        <li><span class="list-item">Code Name</span> :ZG Wang</li>
+
-
        <li><span class="list-item">Discipline</span> :Physics</li>
+
-
        <li><span class="list-item">Hobbies</span> :Reading</li>
+
-
        <li><span class="list-item">Distributions</span> :Experiment</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> :The beginning</li>
+
-
        <li><span class="list-item">The most upset moment this year</span> :The end</li>
+
-
        <li><span class="list-item">words for our team</span> :Wish we could do better.</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
<p>We have constructed a agent-based model based on NetLogo, and conducted two experiments in computer.</p>
-
  <div class="row">
+
      <h4 id="specification">Specification</h4>
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/2/2d/Ustc-people-12.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span> Luyao Wang</li>
+
-
        <li><span class="list-item">Code Name</span> :Way</li>
+
-
        <li><span class="list-item">Age</span> :19</li>
+
-
        <li><span class="list-item">Discipline:</spa</span>  Biology</li>
+
-
        <li><span class="list-item">Hobbies</span> :guitar, lol</li>
+
-
        <li><span class="list-item">Distributions</span> :laboratory assistant, I helped handled the imaging part </li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> :took part in an iGem conference in Taiwan this summer</li>
+
-
        <li><span class="list-item">The upsetest moment this year</span> :when met the red channel‘s dystocia</li>
+
-
        <li><span class="list-item">Words for our team</span> :make a lot of friends in MIT!</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
<ul>
 +
<li>Agent: C.crescentus</li>
 +
<li>Environment: <ul><li>2-D Plate: Solid surface (where enough nutrition exists in our definition) and liquid environment lacking nutrition.</li>
 +
<li>Light: effecting the cell's movement ability</li></ul>
-
  <div class="row">
+
<li>Behavior: The agent cell have two life-stages: swimmer and attached. In the previous state, the cell will move around the plate in a nearly random way; when it gets near to the solid surface, its holdfast will be attached to the surface so it can intake the nutrition from surface. After accumulating enough energy, the cell will start reproducing.</li>
-
    <h3 id="izgzhen"></h3>
+
</ul>
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/a/af/Ustc-people-new-3.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span>Chao Feng</li>
+
-
        <li><span class="list-item">Code Name</span> :Chao Feng</li>
+
-
        <li><span class="list-item">Age</span> :19</li>
+
-
        <li><span class="list-item">Discipline</span> : Organic Chemistry</li>
+
-
        <li><span class="list-item">Hobbies</span> :DotA, Travel</li>
+
-
        <li><span class="list-item">Distributions</span> :Wet Experiment</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> :Get the first colorful picture with E.coli </li>
+
-
        <li><span class="list-item">The upsetest moment this year</span> :The cell doesn't work very well.</li>
+
-
        <li><span class="list-item">Words for our team</span> :Enjoy the process.</li>
+
-
      </ul>
+
<h4 id="version2attachingvisualization">Visualization</h4>
-
    </div>
+
-
  </div>
+
-
  <div class="row">
+
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/f/fd/Ustc-people-17.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span> Mingyuan HU</li>
+
-
        <li><span class="list-item">Code Name</span> : Mia</li>
+
-
        <li><span class="list-item">Age</span> : 20</li>
+
-
        <li><span class="list-item">Discipline</span> : Life Science</li>
+
-
        <li><span class="list-item">Hobbies</span> : Reading, traveling</li>
+
-
        <li><span class="list-item">How many years have you taken part in iGEM:</span> 1 years</li>
+
-
        <li><span class="list-item">Distributions</span> : Wet Experiment</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> : We got the colourful pictures with E.coli.</li>
+
-
        <li><span class="list-item">The upsetest moment this year</span> : In the first time, the experiment didn't work well.</li>
+
-
        <li><span class="list-item">Words for our team</span> : For the better.</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
<p>You can see that the C.crescentus goes around and get attached.</p>
-
  <div class="row">
+
<h4 id="version1lightcontrol">Light Control</h4>
-
    <h3 id="izgzhen"></h3>
+
-
    <div class="small-4 columns">
+
-
      <img src="https://static.igem.org/mediawiki/2014/f/fe/Ustc-people-19.jpg" class="th" />
+
-
    </div>
+
-
    <div class="small-8 columns">
+
-
      <ul class="no-bullet">
+
-
        <li><span class="list-item">Name:</span> Changxu Wang</li>
+
-
        <li><span class="list-item">Code Name</span> : Shine-Cloud</li>
+
-
        <li><span class="list-item">Age</span> :20</li>
+
-
        <li><span class="list-item">Discipline</span> :Bio-technology</li>
+
-
        <li><span class="list-item">Hobbies</span> :reading,exercising,travelling</li>
+
-
        <li><span class="list-item">How many years have you been taking part in iGEM:</span> 1 year</li>
+
-
        <li><span class="list-item">Distributions</span> : Experiment</li>
+
-
        <li><span class="list-item">The most memorable moment this year</span> :I found the basic gene part which our group is using.</li>
+
-
        <li><span class="list-item">The most upset moment this year</span> :Bio-company can't assemble the signal peptide we need</li>
+
-
        <li><span class="list-item">Words for our team</span> : Think better</li>
+
-
      </ul>
+
-
    </div>
+
-
  </div>
+
 +
<p>You can toggle the <code>Light</code> on, and the cells' growth curve will be greatly affected by light. When the light is on, the cell's movement will be inhabited temporarily.</p>
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        <li><span class="list-item">Name:</span> Hang Zhang</li>
 
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        <li><span class="list-item">Code Name</span> : Sunny</li>
 
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        <li><span class="list-item">Age</span> : 20</li>
 
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        <li><span class="list-item">Discipline</span> : Life Science</li>
 
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        <li><span class="list-item">Hobbies</span> : Reading, traveling</li>
 
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        <li><span class="list-item">How many years have you taken part in iGEM:</span> 1 years</li>
 
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        <li><span class="list-item">Distributions</span> : Wet Experiment</li>
 
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        <li><span class="list-item">The most memorable moment this year</span> : We achieved our primary goal,and it's so exciting.</li>
 
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     <h3 data-magellan-destination="Celllab">Bonus: Celllab</h3>
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<p>Celllab is a bio-computing framework under team member Zhen Zhang's developing, enlightened by NetLogo. It is a web-based, flexible framework which is special in the fellowing aspects:
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<li> Viewer can customize the arguments, options etc. </li>
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        <li><span class="list-item">Name:</span> Siyu Wang</li>
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<li> Running instantly in web browser </li>
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        <li><span class="list-item">Code Name</span> : Siyu</li>
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<li> Heavy computing burden can be leveled to server-side. </li>
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        <li><span class="list-item">Age</span> : 22</li>
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</ol>
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        <li><span class="list-item">Discipline</span> : Mathematics</li>
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</p>
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        <li><span class="list-item">Hobbies</span> : Reading</li>
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        <li><span class="list-item">How many years have you taken part in iGEM:</span> 1 years</li>
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<h4> Components </h4>
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        <li><span class="list-item">Distributions</span> : Modeling</li>
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<ul>
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        <li><span class="list-item">The most memorable moment this year</span> : The night before the wiki deadline</li>
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<li>Front-end Drawer -- HTML5 Canvas </li>
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       </ul>
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<li>Real-time communication -- Socket.io </li>
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<li>Back-end server -- node.js </li>
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<li>ABM system prototype -- SimPy</li>
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</ul>
 +
 
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      <p>If you would like to know more about this project, you are welcomed to visit <a href="https://github.com/izgzhen/celllab">our Github Repo</a> </p>
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    <h2 data-magellan-destination="Results">Results</h2>
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<h3 id="netlogovisualization">NetLogo -- Visualization</h3>
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<img src="https://static.igem.org/mediawiki/2014/f/f0/Record.gif"class="th" ></img>
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<p>This is a dynamic visualization of the C.crescentus behaviors. The white to red region is solid surface, which provides necessary nutrition for cells to reproduce. The cells will consume the nutrition as well, but the nutrition is sustainable in this case.</p>
 +
 
 +
<p>You may want to notice how crescents is attached to the region.</p>
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<h3 id="netlogolightcontrol">NetLogo -- Light Control</h3>
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<img src="https://static.igem.org/mediawiki/2014/3/30/Abmlight.png" class="th" />
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<p>The above picture is the change of cell population with time. When the light is on, the population will decay; When light is off, the population will grow. So we can get a conclusion that through light induced  of cell movement, we can control the growing rate of the whole population. The light will inhabit cell's free moving, which prevent the cells from contacting the surface. And in fact, you can also observe the slight delay, which is a reasonable result the massive amount of cells.</p>
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<h3 id="celllabtesting">Celllab Demo</h3>
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<p>This is a screenshot of our framework running in browser. You can also click here to see a live demo.</p>
 +
 
 +
<p>Our aim is to make modeling work presented in a more dynamic, attractive and easy way.</p>
 +
 
 +
<p>You can set your argument and click run, which will lead you to a real-time simulation. <br />
 +
<img src="https://static.igem.org/mediawiki/2014/8/81/Celllab-testing.png" alt="img"class="th"  /></p>
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Revision as of 02:37, 18 October 2014

Motion Control

To control the motion of C.crescentus, we firstly constructed the basic circuits, then we built a agent-based modeling with visualization in. What's more, we also started a new web-based modeling framework.

Gene Circuits

We've constructed several modeling skeleton in Matlab Simbiology Package, they are:

  1. DgrA/DgrB Circuit in regulating the flagellum movement
  2. HfiA/HfsJ Circuit in regulating the genesis of composing substances holdfast.

DgrA/DgrB Circuit

You can get some basic information from the project part, we will get a brief illustration.

After some analysis, we constructed a rudimentary gene.

Equations

$\frac{d([cdiGMP-DgrA])}{dt} = \frac{(Ka \cdot [cdiGMP] \cdot DgrA - Kf \cdot [cdiGMP-DgrA] \cdot FliL - [Kd_{cdiGMP-DgrA}] \cdot [cdiGMP-DgrA])}{cell}$

$\frac{d([cdiGMP-DgrB])}{dt} = \frac{(Kb \cdot [cdiGMP] \cdot DgrB - [Kd_{cdiGMP-DgrB}] \cdot [cdiGMP-DgrB])}{cell}$

$\frac{d(FliL)}{dt} = \frac{(-Kf \cdot [cdiGMP-DgrA] \cdot FliL + Kg_{FliL})}{cell}$

$\frac{d([cdiGMP-DgrA-FliL])}{dt} = \frac{(Kf \cdot [cdiGMP-DgrA] \cdot FliL)}{cell}$

Results

The fellowing pictures simulated the change of [FliL] and [cdiGMP-DgrB] with time. We can read that with upstream signals, the concentration of protein related to the flagellum functions does change.

HfiA/HfsJ Circuit

From our project design, we can get: Upstream promoter Expression Rate $\rightarrow$ HfiA $\rightarrow$ HfsJ $\rightarrow$ Catalyzing Rate

So, we contracted another gene.

Equations

$\frac{d(P_{HfiA})}{dt} = -\frac{Vm_{HfiA} \cdot X^n_{HfiA}/(Kp_{HfiA}+X^n_{HfiA})}{cell}$

$\frac{d([X-P_{HfiA}])}{dt} = \frac{Vm_{HfiA} \cdot X^n_{HfiA}/(Kp_{HfiA}+X^n_{HfiA}) - Kd_{c1 }cdot [X-P_{HfiA}]}{cell}$

$\frac{d(mRNA_{HfiA})}{dt} = \frac{Ktc_{HfiA} \cdot P_{HfiA} - Kd_{mRNA_{HfiA}} \cdot mRNA_{HfiA} }{cell}$

$\frac{d(HfiA)}{dt} = \frac{Ktl_{HfiA} \cdot mRNA_{HfiA} - Kd_{HfiA} \cdot HfiA - Kc \cdot HfiA \cdot HfsJ}{cell}$

$\frac{d(P_{HfsJ})}{dt} = \frac{-Vm_{HfsJ} \cdot P_{HfsJ}^n{_{HfsJ}}/(Kp_{HfsJ}+P_{HfsJ}^{n_{HfsJ}})}{cell}$

$\frac{d([CtrA-P_{HfsJ}])}{dt} = \frac{Vm_{HfsJ} \cdot P_{HfsJ}^n{_{HfsJ}}/(Kp_{HfsJ}+P_{HfsJ}^{n_{HfsJ}}) - Kd_{c2 }cdot [CtrA-P_{HfsJ}]}{cell}$

$\frac{d(mRNA_{HfsJ})}{dt} = \frac{Ktc_{HfsJ} \cdot [CtrA-P_{HfsJ}] - Kd_{mRNA_{HfsJ}} \cdot mRNA_{HfsJ}}{cell}$

$\frac{d(HfsJ)}{dt} = \frac{Ktl_{HfsJ} \cdot mRNA_{HfsJ} - Kd_{HfsJ} \cdot HfsJ - Kc \cdot HfiA \cdot HfsJ - Kf \cdot HfsJ \cdot Sub-Kr \cdot EzCom + Kcat \cdot EzCom}{cell}$

$\frac{d([HfiA-HfsJ])}{dt} = \frac{Kc \cdot HfiA \cdot HfsJ}{cell}$

$\frac{d(Sub)}{dt} = \frac{-Kf \cdot HfsJ \cdot Sub-Kr \cdot EzCom}{cell}$

$\frac{d(Pro)}{dt} = \frac{Kcat \cdot EzCom}{cell}$

$\frac{d(EzCom)}{dt} = \frac{Kf \cdot HfsJ \cdot Sub-Kr \cdot EzCom - Kcat \cdot EzCom}{cell}$

Results

We conducted a sensitive analysis here. We can see that the increased concentration of $X$ has a suppressing effect on the protein catalyst rate.

abm

Compared to traditional modeling methods, such as ODE, PDE and many others, the Agent-Based Modeling (ABM) is based on the modeling of individual behaviors.

In ABM, the agent chooses his next step based on the surrounding circumstance. The most intriguing part of ABM is that the overall phenomenon emerges from a large collection of agents. This gives us the opportunity to discover something beyond the scope of traditional modeling methods.

So In our ABM part, we aimed at:

  1. Give a comprehensive analysis of the artificial system
  2. Discover fresh new characteristics
  3. Visualize the collective behaviors of many cells

NetLogo Prototype

We have constructed a agent-based model based on NetLogo, and conducted two experiments in computer.

Specification

  • Agent: C.crescentus
  • Environment:
    • 2-D Plate: Solid surface (where enough nutrition exists in our definition) and liquid environment lacking nutrition.
    • Light: effecting the cell's movement ability
  • Behavior: The agent cell have two life-stages: swimmer and attached. In the previous state, the cell will move around the plate in a nearly random way; when it gets near to the solid surface, its holdfast will be attached to the surface so it can intake the nutrition from surface. After accumulating enough energy, the cell will start reproducing.

Visualization

You can see that the C.crescentus goes around and get attached.

Light Control

You can toggle the Light on, and the cells' growth curve will be greatly affected by light. When the light is on, the cell's movement will be inhabited temporarily.

Bonus: Celllab

Celllab is a bio-computing framework under team member Zhen Zhang's developing, enlightened by NetLogo. It is a web-based, flexible framework which is special in the fellowing aspects:

  1. Viewer can customize the arguments, options etc.
  2. Running instantly in web browser
  3. Heavy computing burden can be leveled to server-side.

Components

  • Front-end Drawer -- HTML5 Canvas
  • Real-time communication -- Socket.io
  • Back-end server -- node.js
  • ABM system prototype -- SimPy

If you would like to know more about this project, you are welcomed to visit our Github Repo

Results

NetLogo -- Visualization

This is a dynamic visualization of the C.crescentus behaviors. The white to red region is solid surface, which provides necessary nutrition for cells to reproduce. The cells will consume the nutrition as well, but the nutrition is sustainable in this case.

You may want to notice how crescents is attached to the region.

NetLogo -- Light Control

The above picture is the change of cell population with time. When the light is on, the population will decay; When light is off, the population will grow. So we can get a conclusion that through light induced of cell movement, we can control the growing rate of the whole population. The light will inhabit cell's free moving, which prevent the cells from contacting the surface. And in fact, you can also observe the slight delay, which is a reasonable result the massive amount of cells.

Celllab Demo

This is a screenshot of our framework running in browser. You can also click here to see a live demo.

Our aim is to make modeling work presented in a more dynamic, attractive and easy way.

You can set your argument and click run, which will lead you to a real-time simulation.
img