Difference between revisions of "Team:Tokyo Tech/Model"

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<h3>★  ALERT! </h3>
 
<p>This page is used by the judges to evaluate your team for the <a href="https://2018.igem.org/Judging/Medals">medal criterion</a> or <a href="https://2018.igem.org/Judging/Awards"> award listed below</a>. </p>
 
<p> Delete this box in order to be evaluated for this medal criterion and/or award. See more information at <a href="https://2018.igem.org/Judging/Pages_for_Awards"> Instructions for Pages for awards</a>.</p>
 
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<section class="engine"><a href="https://mobirise.info/j">website templates</a></section><section class="cid-r5ehuhHDnG mbr-fullscreen mbr-parallax-background" id="header2-6">
  
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<h1> Modeling</h1>
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<p>Mathematical models and computer simulations provide a great way to describe the function and operation of BioBrick Parts and Devices. Synthetic Biology is an engineering discipline, and part of engineering is simulation and modeling to determine the behavior of your design before you build it. Designing and simulating can be iterated many times in a computer before moving to the lab. This award is for teams who build a model of their system and use it to inform system design or simulate expected behavior in conjunction with experiments in the wetlab.</p>
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                <h1 class="mbr-section-title mbr-bold pb-3 mbr-fonts-style display-1">PROJECT</h1>
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                    Click any text to edit or style it. Select text to insert a link. Click blue "Gear" icon in the top right corner to hide/show buttons, text, title and change the block background. Click red "+" in the bottom right corner to add a new block. Use the top left menu to create new pages, sites and add themes.
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                    <a class="btn btn-md btn-secondary display-4" href="https://mobirise.com">LEARN MORE</a>
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                    <a class="btn btn-md btn-white-outline display-4" href="https://mobirise.com">LIVE DEMO</a>
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                            <p class="mbr-text mb-0 mbr-fonts-style display-7"><br>Dengue virus, which is in the flavivirus family, is a worldwide spread virus and has huge impact on society, however, not many developing countries are recognizing its danger.<br><br></p>
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<h3> Gold Medal Criterion #3</h3>
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Convince the judges that your project's design and/or implementation is based on insight you have gained from modeling. This could be either a new model you develop or the implementation of a model from a previous team. You must thoroughly document your model's contribution to your project on your team's wiki, including assumptions, relevant data, model results, and a clear explanation of your model that anyone can understand.
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The model should impact your project design in a meaningful way. Modeling may include, but is not limited to, deterministic, exploratory, molecular dynamic, and stochastic models. Teams may also explore the physical modeling of a single component within a system or utilize mathematical modeling for predicting function of a more complex device.
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Please see the <a href="https://2018.igem.org/Judging/Medals"> 2018
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Medals Page</a> for more information.
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            <div class="mbr-text col-12 col-md-8 mbr-fonts-style display-7">Dengue virus is unique in terms of its four different serotypes. Multiple infection can easily cause severe dengue, appearing hemorrhage and organ damage. It is important to grasp which serotype the patient is infected, however, there is not enough data about each serotype in a year.<div><br></div><div>To tackle the situation, we took the following two approaches.</div></div>
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<h3>Best Model Special Prize</h3>
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To compete for the <a href="https://2018.igem.org/Judging/Awards">Best Model prize</a>, please describe your work on this page  and also fill out the description on the <a href="https://2018.igem.org/Judging/Judging_Form">judging form</a>. Please note you can compete for both the gold medal criterion #3 and the best model prize with this page.
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You must also delete the message box on the top of this page to be eligible for the Best Model Prize.
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                    <li><span style="font-size: 1rem;"><strong>MODELLING</strong>&nbsp;- We succeeded in the development of the serotype prediction system using stochastic process analysis. This system can predict the patient's serotype by simulating the past data. </span><a href="https://mobirise.co/" style="font-size: 1rem; background-color: rgb(255, 255, 255);">Try it now!</a><br></li>
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                    <li><strong>FINDING FLAVI</strong>&nbsp;- We also developed the simple and fast testing kit that can detect serotype with fluorescence, so that we can check the patient easily and get enough data to estimate the patients’ serotypes more accurate. <a href="https://mobirise.co/">Try it now!</a></li>
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            <div class="mbr-text col-12 col-md-8 mbr-fonts-style display-7">In the future, this system can contribute to other flavivirus detection system.<div><strong><br></strong></div></div>
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<h3> Inspiration </h3>
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Here are a few examples from previous teams:
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<li><a href="https://2016.igem.org/Team:Manchester/Model">2016 Manchester</a></li>
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<li><a href="https://2016.igem.org/Team:TU_Delft/Model">2016 TU Delft</li>
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<li><a href="https://2014.igem.org/Team:ETH_Zurich/modeling/overview">2014 ETH Zurich</a></li>
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<li><a href="https://2014.igem.org/Team:Waterloo/Math_Book">2014 Waterloo</a></li>
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                    <a class="btn btn-primary display-4" href="https://mobirise.co">LEARN MORE</a>
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                    <a class="btn btn-black-outline display-4" href="https://mobirise.co">LIVE DEMO</a>
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Revision as of 00:26, 12 October 2018

Human Practice Overview
website templates

PROJECT

Click any text to edit or style it. Select text to insert a link. Click blue "Gear" icon in the top right corner to hide/show buttons, text, title and change the block background. Click red "+" in the bottom right corner to add a new block. Use the top left menu to create new pages, sites and add themes.

Mobirise


Dengue virus, which is in the flavivirus family, is a worldwide spread virus and has huge impact on society, however, not many developing countries are recognizing its danger.

Dengue virus is unique in terms of its four different serotypes. Multiple infection can easily cause severe dengue, appearing hemorrhage and organ damage. It is important to grasp which serotype the patient is infected, however, there is not enough data about each serotype in a year.

To tackle the situation, we took the following two approaches.
  1. MODELLING - We succeeded in the development of the serotype prediction system using stochastic process analysis. This system can predict the patient's serotype by simulating the past data. Try it now!
  2. FINDING FLAVI - We also developed the simple and fast testing kit that can detect serotype with fluorescence, so that we can check the patient easily and get enough data to estimate the patients’ serotypes more accurate. Try it now!
In the future, this system can contribute to other flavivirus detection system.

Address

2 Chome-12-1
Ookayama, Meguro, Tokyo

Contacts

Email: igem2018tokyotech@gmail.com