Difference between revisions of "Team:HUST-China/Model"

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    <title>Model | iGEM HUST-China</title>
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<h3>★  ALERT! </h3>
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<p>This page is used by the judges to evaluate your team for the <a href="https://2021.igem.org/Judging/Medals">medal criterion</a> or <a href="https://2021.igem.org/Judging/Awards"> award listed below</a>. </p>
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<p> Delete this box in order to be evaluated for this medal criterion and/or award. See more information at <a href="https://2021.igem.org/Judging/Pages_for_Awards"> Instructions for Pages for awards</a>.</p>
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        <div class="container d-flex justify-content-between"><a class="navbar-brand"
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                href="https://2021.igem.org/Team:HUST-China"><i class="navbar-logo-left"></i><span>HUST-China</span></a>
 
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<h1> Modeling</h1>
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                    <li class="nav-item dropdown"><a aria-expanded="false" aria-haspopup="true"
 
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<p>Mathematical models and computer simulations provide a great way to describe the function and operation of 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. </p>
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                            role="button">Project</a>
 
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                        <div aria-labelledby="navbarProjectDropdown" class="dropdown-menu"><a class="dropdown-item"
<p>Please note you can compete for both the Gold Medal criterion #3 and the Best Model prize with this page. </p>
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                                href="https://2021.igem.org/Team:HUST-China/Description">Description</a><a
 
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                                class="dropdown-item" href="https://2021.igem.org/Team:HUST-China/Design">Design</a><a
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                                href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept">Proof of
 
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                                Concept</a><a class="dropdown-item"
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                                href="https://2021.igem.org/Team:HUST-China/Safety">Safety</a><a class="dropdown-item"
<h3> Gold Medal Criterion #3</h3>
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                                href="https://2021.igem.org/Team:HUST-China/Implementation">Proposed
<p>
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                                Implementation</a><a class="dropdown-item"
Use modeling to gain insight into how your project works or should be implemented. Explain your model's assumptions, data, parameters, and results in a way that anyone could understand.
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                                href="https://2021.igem.org/Team:HUST-China/Contribution">Contribution</a>
<br><br>
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                        </div>
Please see the <a href="https://2021.igem.org/Judging/Medals">2021 Medals Page</a> for more information.  
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<h3>Best Model Special Prize</h3>
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                                href="https://2021.igem.org/Team:HUST-China/Human_Practices">Overview</a><a
 
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                                class="dropdown-item"
<p>Models and computer simulations provide a great way to describe the functioning and operation of BioBrick Parts and Devices. Synthetic biology is an engineering discipline and part of engineering is simulation and modeling to determine system behavior before building your design. 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 before or in conjunction with experiments in the wetlab.
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                                href="https://2021.igem.org/Team:HUST-China/Human_Practices_01">Part
</p><p>
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                                1</a><a class="dropdown-item"
To compete for the <a href="https://2021.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://2021.igem.org/Judging/Judging_Form">judging form</a>.  
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                                href="https://2021.igem.org/Team:HUST-China/Human_Practices_02">Part
</p>
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                                2</a><a class="dropdown-item"
 
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                                href="https://2021.igem.org/Team:HUST-China/Collaborations">Part
</div>
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                                3</a><a class="dropdown-item"
 
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                                href="https://2021.igem.org/Team:HUST-China/Education">Part 4</a>
 
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<h3> Inspiration </h3>
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                            class="nav-link dropdown-toggle" data-toggle="dropdown" href="#" id="navbarModelingDropdown"
<p>You can look at what other teams did to get some inspiration! <br />
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                            role="button">Modeling</a>
Here are a few examples:</p>
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<ul>
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                                href="https://2021.igem.org/Team:HUST-China/Model">Overview</a><a class="dropdown-item"
<li><a href="https://2018.igem.org/Team:GreatBay_China/Model">2018 GreatBay China</a></li>
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                                href="https://2021.igem.org/Team:HUST-China/Gene_Pathway">Gene
<li><a href="https://2018.igem.org/Team:Leiden/Model">2018 Leiden</a></li>
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                                Pathway</a><a class="dropdown-item"
<li><a href="https://2019.igem.org/Team:IISER_Kolkata/Model">2019 IISER Kolkata</a></li>
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                                href="https://2021.igem.org/Team:HUST-China/Dye_color_forecast">Dye color
<li><a href="https://2019.igem.org/Team:Exeter/Model">2019 Exeter</li>
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                                forecast</a><a class="dropdown-item"
<li><a href="https://2019.igem.org/Team:Mingdao/Model">2019 Mingdao</a></li>
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                                href="https://2021.igem.org/Team:HUST-China/Micronucleus_Counter">Micronucleus
<li><a href="https://2020.igem.org/Team:Harvard/Model">2020 Harvard</a></li>
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                                Counter</a></div>
<li><a href="https://2020.igem.org/Team:Leiden/Model">2020 Leiden</a></li>
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                    </li>
</ul>
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                    <li class="nav-item dropdown"><a aria-expanded="false" aria-haspopup="true"
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                                class="dropdown-item"
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                                href="https://2021.igem.org/Team:HUST-China/Engineering">Engineering
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                                Success</a><a class="dropdown-item"
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                                href="https://2021.igem.org/Team:HUST-China/Results">Results</a><a class="dropdown-item"
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                                href="https://video.igem.org/w/aMwNT6eBryGs8xG5avXD51">Promotion
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            <h1 id="Top">Model</h1>
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                        <h5>Contents</h5>
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                        <ul></ul>
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                    </div>
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                </div>
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                <div class="content col-lg-9">
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                    <article>
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                        <h1>Overview</h1>
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                        <p>The modeling part participates in the progress of the project from three dimensions.</p>
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                        <p>In <a href="https://2021.igem.org/Team:HUST-China/Gene_Pathway">GenePathway</a>,
 +
                            modeling provides guidance for pathway design and predicts downstream product yield of
 +
                            pre-constructed pathway to ensure the feasibility of the project.</p>
 +
                        <p>In <a href="https://2021.igem.org/Team:HUST-China/Dye_Color_Forecast">Dye Color
 +
                                Forcast</a>, modeling provides a set of research paradigm-including mathematical Part
 +
                            and computational Part to study the representation of various molecular adhesion systems,
 +
                            and provides downstream tools for products based on this, which not only saves experimental
 +
                            costs, but also provides convenience for users.</p>
 +
                        <p>In <a href="https://2021.igem.org/Team:HUST-China/Micronucleus_Counter">Micronucleus
 +
                                Counter</a>, the modeling group provided a complete set of counting tools based on
 +
                            ordinary optical microscopy, which is highly consistent with the current standards. At the
 +
                            same time, we open a simple custom window and corresponding custom process, which greatly
 +
                            saves costs and liberates manpower while ensuring freedom of work.</p>
 +
                        <h1>Mind Map</h1><img
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                                    <p>The modeling results propelled the designing of bio-brick. What about the
 +
                                        simulation of the <a
 +
                                            href="https://2021.igem.org/Team:HUST-China/Gene Pathway">entire
 +
                                            circuit </a>? I mean, bio-brick is one thing, but integration of all those
 +
                                        parts is another. Do you have the same thought in mind?</p>
 +
                                </div>
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                            </div>
 +
                        </div>
 +
                    </article>
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                    <p><span>CONTACT US: </span><a href="mailto:iGEMHUSTChina@163.com">iGEMHUSTChina@163.com</a></p>
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                    <p>Huazhong University of Sci. &amp; Tech., Wuhan, China</p>
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                    <p>1037# Luoyu Rd, Wuhan, P.R.China 430074</p>
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Latest revision as of 14:27, 16 December 2021

Model | iGEM HUST-China

Model


Overview

The modeling part participates in the progress of the project from three dimensions.

In GenePathway, modeling provides guidance for pathway design and predicts downstream product yield of pre-constructed pathway to ensure the feasibility of the project.

In Dye Color Forcast, modeling provides a set of research paradigm-including mathematical Part and computational Part to study the representation of various molecular adhesion systems, and provides downstream tools for products based on this, which not only saves experimental costs, but also provides convenience for users.

In Micronucleus Counter, the modeling group provided a complete set of counting tools based on ordinary optical microscopy, which is highly consistent with the current standards. At the same time, we open a simple custom window and corresponding custom process, which greatly saves costs and liberates manpower while ensuring freedom of work.

Mind Map

The modeling results propelled the designing of bio-brick. What about the simulation of the entire circuit ? I mean, bio-brick is one thing, but integration of all those parts is another. Do you have the same thought in mind?

CONTACT US: iGEMHUSTChina@163.com

Huazhong University of Sci. & Tech., Wuhan, China

1037# Luoyu Rd, Wuhan, P.R.China 430074

Copyright © HUST-China iGEM 2021