Difference between revisions of "Team:NCTU Formosa/Model"

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                 <h1 class="topic" id="topic1">Overview</h1>
 
                 <h1 class="topic" id="topic1">Overview</h1>
 
                 <p id="p1">
 
                 <p id="p1">
                     &#8195;&#8195;With quorum sensing and repressible promoter, our biobrick has a time span to achieve oral sterilization and restoration. With the increase of oral bacteria, it will activate the antimicrobial peptide LL-37 to inhibit the large amount of bacteria which cause tooth decay and periodontal disease. When the amount of bacteria decrease, it will activate BMP2 and STATH to repair gums and help tooth remineralization. This mechanism can avoid the formation of biofilm during the remineralization process, and it also can achieve the best efficient restoration on the condition of fewer bacteria.
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                     &#8195;&#8195;Modeling is calculating the physical phenomenon by using mathematical methods or logical algorithms. Our model aims at stimulate bacterial growth curve with DenTeeth and predicting the function of quorum sensing system. Besides, we also develop an AI which can accurately find out the best frequency for each dog using DenTeeth . Our model can be divided into the following three parts:
 
                 </p>
 
                 </p>
 
             </div>
 
             </div>

Revision as of 07:43, 9 September 2021


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Overview

  Modeling is calculating the physical phenomenon by using mathematical methods or logical algorithms. Our model aims at stimulate bacterial growth curve with DenTeeth and predicting the function of quorum sensing system. Besides, we also develop an AI which can accurately find out the best frequency for each dog using DenTeeth . Our model can be divided into the following three parts:

Growth Model
dog
Quorum Sensing Model
Design
Optimized Frequency Model
hp

tab01的內容

tab02的內容

tab03的內容

Assumptions of Whole Model

  With quorum sensing and repressible promoter, our biobrick has a time span to achieve oral sterilization and restoration. With the increase of oral bacteria, it will activate the antimicrobial peptide LL-37 to inhibit the large amount of bacteria which cause tooth decay and periodontal disease. When the amount of bacteria decrease, it will activate BMP2 and STATH to repair gums and help tooth remineralization. This mechanism can avoid the formation of biofilm during the remineralization process, and it also can achieve the best efficient restoration on the condition of fewer bacteria.

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