Difference between revisions of "Team:NEFU China/Gold integrated"

 
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<title>Human Practices</title>
 
<title>Human Practices</title>
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<li id="nav" style="left: 8%!important; width: 100%!important;">&#160;&#160;&#160;&#160;&#160;&#160;&#160;&#160;&#160;&#160;
 
<li id="nav" style="left: 8%!important; width: 100%!important;">&#160;&#160;&#160;&#160;&#160;&#160;&#160;&#160;&#160;&#160;
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<ul id="sub_02">
 
<ul id="sub_02">
 
<li><a href="https://2018.igem.org/Team:NEFU_China/Background" target="_self">BACKGROUND</a></li>
 
<li><a href="https://2018.igem.org/Team:NEFU_China/Background" target="_self">BACKGROUND</a></li>
<li><a href="https://2018.igem.org/Team:NEFU_China/Description" target="_self">DESCRIPTION</a></li>
+
<li><a href="https://2018.igem.org/Team:NEFU_China/Description" target="_self">DESCRIPTION &amp; DESIGN</a></li>
<li><a href="https://2018.igem.org/Team:NEFU_China/Design" target="_self">DESIGN</a></li>
+
<li><a href="https://2018.igem.org/Team:NEFU_China/Coding book" target="_self">CODE BOOK</a></li>
<li><a href="https://2018.igem.org/Team:NEFU_China/Coding book" target="_self">CODING BOOK</a></li>
+
 
  </ul>
 
  </ul>
 
  </li>
 
  </li>
 
 
 
<li class="mainlevel" id="mainlevel_03">
 
<li class="mainlevel" id="mainlevel_03">
  <a href="https://2018.igem.org/Team:NEFU_China/Experiment"><img id="parts" src="https://static.igem.org/mediawiki/2018/6/62/T--NEFU_China--_RESULTS.png">EXPERIMENT</a>
+
  <a href="https://2018.igem.org/Team:NEFU_China/Demonstrate"><img id="parts" src="https://static.igem.org/mediawiki/2018/6/62/T--NEFU_China--_RESULTS.png">EXPERIMENTS</a>
 
  <ul id="sub_03">
 
  <ul id="sub_03">
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Lock_Key" target="_self">LOCK &amp; KEY</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Lock_Key" target="_self">LOCK &amp; KEY</a></li>
  <li><a href="https://2018.igem.org/Team:NEFU_China/Suicide" target="_self">SUICIDE</a></li>
+
  <li><a href="https://2018.igem.org/Team:NEFU_China/Suicide" target="_self">INFORMATION DESTRUCTION</a></li>
  <li><a href="https://2018.igem.org/Team:NEFU_China/Splicing" target="_self">SPLICING</a></li>
+
  <li><a href="https://2018.igem.org/Team:NEFU_China/Splicing" target="_self">Pre-RNA SPLICING</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Demonstrate" target="_self">DEMONSTRATE</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Demonstrate" target="_self">DEMONSTRATE</a></li>
 
  <hr>
 
  <hr>
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  <ul id="sub_05">
 
  <ul id="sub_05">
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Model" target="_self">OVERVIEW</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Model" target="_self">OVERVIEW</a></li>
  <li><a href="https://2018.igem.org/Team:NEFU_China/Model1" target="_self">MODEL1</a></li>
+
  <li><a href="https://2018.igem.org/Team:NEFU_China/Model1" target="_self">CORRESPONDING COEFFICIENT</a></li>
  <li><a href="https://2018.igem.org/Team:NEFU_China/Model2" target="_self">MODEL2</a></li>
+
  <li><a href="https://2018.igem.org/Team:NEFU_China/Model2" target="_self">KILLING MODEL</a></li>
 
  </ul>
 
  </ul>
 
  </li>
 
  </li>
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  <li><a href="https://2018.igem.org/Team:NEFU_China/Attributions" target="_self">ATTRIBUTIONS</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Attributions" target="_self">ATTRIBUTIONS</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Members" target="_self">MEMBERS</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Members" target="_self">MEMBERS</a></li>
 
  <!-- <li><a href="https://2018.igem.org/Team:NEFU_China/Sponsoring" target="_self">SPONSORING</a></li>-->
 
 
  </ul>
 
  </ul>
 
  </li>
 
  </li>
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  <a href="https://2018.igem.org/Team:NEFU_China/Human_Practices"><img id="humanpractice" src="https://static.igem.org/mediawiki/2018/9/91/T--NEFU_China--_HUMANPRACTICE.png">HUMAN PRACTICE</a>
 
  <a href="https://2018.igem.org/Team:NEFU_China/Human_Practices"><img id="humanpractice" src="https://static.igem.org/mediawiki/2018/9/91/T--NEFU_China--_HUMANPRACTICE.png">HUMAN PRACTICE</a>
 
  <ul id="sub_08">
 
  <ul id="sub_08">
 +
  <li><a href="https://2018.igem.org/Team:NEFU_China/Human_Practices" target="_self">OVERVIEW</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Gold_integrated" target="_self">GOLD INTEGRATED</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Gold_integrated" target="_self">GOLD INTEGRATED</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Silver" target="_self">SILVER</a></li>
 
  <li><a href="https://2018.igem.org/Team:NEFU_China/Silver" target="_self">SILVER</a></li>
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                     <p>
 
                     <p>
 
                          
 
                          
For this part, we thoroughly considered the application of our project in the actual situation, and discussed these issues with our teachers and experts with different professional expertise in biological companies. Here are our conclusions.<br>
+
For this part, we thoroughly considered the application of our project in the actual situation, and discussed these issues with our teachers and experts with different professional expertise in biological companies. Here are our conclusions.<br>
 
                     </p>
 
                     </p>
 
                 </div>
 
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<div class="humanpractice">
 
<div class="humanpractice">
 +
 
     <h2 class="heading">Human Practices - Gold integrated</h2>
 
     <h2 class="heading">Human Practices - Gold integrated</h2>
 
     <div class="humanpractice-block">
 
     <div class="humanpractice-block">
         <h3>Fixation</h3>
+
         <h3 style="color: orange;font-size: 30px!important;">Suggestion From Professor</h3>
 
<!--
 
<!--
 
         <span class="humanpractice-date">data: 2018.10.07</span>
 
         <span class="humanpractice-date">data: 2018.10.07</span>
 
         <h4>place: nefu</h4>-->
 
         <h4>place: nefu</h4>-->
         <p>
+
         <p style="font-size: 26px!important;">
 
<br>
 
<br>
             We discussed with Professor Zeng Fansuo. When we wanted to choose a chemical agent to induce the expression of Bax (BCL2 Associated X, Apoptosis Regulator) gene, Professor Zeng suggested that we could use the α-factor to induce the pFig2c promoter to initiate the expression of Bax suicide gene. In this case, α-type yeast can naturally produce α-factor, which can be recognized by a-type yeast to induce the pFig2c promoter.<br>
+
             1. We discussed with Professor Yuhua Li, when we wanted to choose a chemical agent to induce the expression of Bax (BCL2 Associated X, Apoptosis Regulator) gene, Professor Li suggested that we could use the α-factor to induce the pFig2c promoter to initiate the expression of Bax suicide gene. In this case, α-type yeast can naturally produce α-factor, which can be recognized by a-type yeast to induce the pFig2c promoter.<br>
         </p>
+
            2. When we discussed these questions with Professor Chunbo Teng, she suggested that we can use introns that can be spliced out during mRNA maturation to further encrypt our information.
 +
            </p><br>
 +
<div align="center">
 +
<img src="https://static.igem.org/mediawiki/2018/5/5f/T--NEFU_China--professor_Teng.png" style="width:630px;">
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</div>
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         <br>
 +
        <p></p>
 
     </div>
 
     </div>
 
     <div class="humanpractice-block">
 
     <div class="humanpractice-block">
<h3>Advantages</h3>
+
<h3 style="color: orange;font-size: 35px;height: 33px!important;">Opinion</h3>
 
  <!--
 
  <!--
 
<span class="humanpractice-date">data: 2018.10.07</span>
 
<span class="humanpractice-date">data: 2018.10.07</span>
 
<h4>place: nefu</h4>
 
<h4>place: nefu</h4>
 
           -->
 
           -->
<p>
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<p style="font-size: 26px!important;">
 
<br>
 
<br>
             Because we have taken into account the interception of information during message transmission, spy yeast (a-type yeast) can be induced to trigger apoptosis by the α factor of the killer yeast (α-type yeast) in the process of complete cultivation. The limited culturing time of the yeast prior to their death can prevent information from being leaked out. When designated receiver gets the information-carrying yeast and culture it properly, the yeast can successfully survive. When we discussed these questions with Professor Niu Ben, he suggested that we can use introns that can be spliced out during mRNA maturation to further encrypt our information.<br>
+
             Because we have taken into account the interception of information during message transmission, spy yeast ( the information carrying yeast, designated as "spy yeast", a-type yeast) can be induced to trigger apoptosis by the α factor of the killer yeast (α-type yeast) in the process of complete cultivation. The limited culturing time of the yeast prior to their death can prevent information from being leaked out. When designated receiver gets the information-carrying yeast and culture it properly, the yeast can successfully survive.  
 +
 
 +
            <br>
 
 
 
 
 
         </p>
 
         </p>
 
     </div>
 
     </div>
 
<div class="humanpractice-block">
 
<div class="humanpractice-block">
<h3>Applications</h3>
+
<h3 style="color: orange;font-size: 35px;height: 33px!important;">Applications</h3>
 
<!--
 
<!--
 
<span class="humanpractice-date">data: 2018.10.07</span>
 
<span class="humanpractice-date">data: 2018.10.07</span>
 
<h4>place: nefu</h4>-->
 
<h4>place: nefu</h4>-->
<p>
+
<p style="font-size: 26px!important;">
 
<br>
 
<br>
             Through communication with experts from the National Secrecy Bureau of Heilongjiang Province in China, we learned that if our system can be used in the encryption industry, we should be as rigorous as possible in our biological principles. We must limit the equipment and personnel access scopes to ensure that the entire encryption process is rigorous enough. For example, the transport of information-carrying yeast powder and the storage of the keys should be the responsibility of different people, and each part should be accessible to a limited number of people.<br>
+
             Through communication with experts from the National Secrecy Bureau of Heilongjiang Province in China, we learned that if our system can be used in the encryption industry, we should be as rigorous as possible in our biological principles. We must limit the equipment and personnel access&nbsp;scopes to ensure that the entire encryption process is rigorous enough. For example, the transport of information-carrying yeast powder and the storage of the keys should be the responsibility of different people, and each part should be accessible to a limited number of people.<br>
 
         </p>
 
         </p>
 
     </div>
 
     </div>
 
<div class="humanpractice-block">
 
<div class="humanpractice-block">
<h3>Outreach</h3>
+
<h3 style="color: orange;font-size: 35px;">Outreach</h3>
<!--
+
<!--
 
<span class="humanpractice-date">data: 2018.10.07</span>
 
<span class="humanpractice-date">data: 2018.10.07</span>
 
<h4>place: nefu</h4>-->
 
<h4>place: nefu</h4>-->
 +
 +
 +
   
 +
 
<p>
 
<p>
<br>
+
<br>
             One of the best ways to increase scientific awareness is communication by which people who do not have theoretical knowledge will well understand complex research.<br>
+
<strong><span style="color: orange;font-size: 30px!important;">Player self-report</span></strong><br><br>
 +
             <span style="color:orange;font-size: 26px;">Player Feng Yang</span><br>
 +
            <p style="font-size: 26px!important;">
 +
As a student who is not major in biology, synthetic biology is so far for me, but this mini-game opens the door to a new world for me. I never thought that biological knowledge could be applied in information storage and encryptions, this mini-game really helped me learn a lot.
 +
            </p><br>
 +
<span style="color:orange;font-size: 26px;">Player Jian Wang</span><br>
 +
            <p style="font-size: 26px!important;">
 +
I found that if I were a burglar who wanted to get true information without correct primers, I had to go through a lot of trials, which shows that this encryption system has stronger confidentiality than the existing encryption methods.
 +
            </p><br>
 +
<span style="color:orange;font-size: 26px;">Player Si Zhang</span><br>
 +
            <p style="font-size: 26px!important;">
 +
This game is very interesting, and the biological knowledge involved is also refreshing, but I think that if we finally get the sentence that there is blank instead of a string of letters, it may be more convenient for the recipient.
 +
Through the player's self-report, we know that our small game really allows players to learn the biological knowledge of our project, and experience the difficulties of cracking our system. At the same time, their suggestions also let us know the shortcomings of our case. We will use computer programming to improve our password book to achieve the effect of word segmentation.
 +
            </p><br>
 +
            <p style="font-size: 26px!important;">
 +
Through the player's self-report, we know that our small game really allows players to learn the biological knowledge of our project, and experience the difficulties of cracking our system. At the same time, their suggestions also let us know the shortcomings of our case. We will use computer programming to improve our password book to achieve the effect of word segmentation.
 +
            </p><br>
 +
</p>
 +
 
 +
    </div>
 +
<div class="humanpractice-block">
 +
<h3 style="color: orange;font-size: 35px;">Social</h3>
 +
<!--
 +
<span class="humanpractice-date">data: 2018.10.07</span>
 +
<h4>place: nefu</h4>-->
 +
<p style="font-size: 26px!important;">
 +
<br>
 +
            Our project is about the storage, encryption and transportation of information, so we decided to interview relevant experts and potential users for their advice to optimize our project.<br>
 
         </p>
 
         </p>
 
 
    <table id="table1">
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<tr>
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<td valign="top" width="40%">
+
<br>
<video poster="" controls="" style="width: 100%;padding-top: 20px;padding-bottom: 20px;">
+
<strong><span style="color: orange;font-size: 26px;">National Institutions</span></strong><br>
                        <source src="https://static.igem.org/mediawiki/2018/9/96/T--NEFU_China--mini-game_video.mp4" type="video/mp4">
+
<strong><span style="color: orange;font-size: 26px;">The National Secrecy Bureau of Heilongjiang Province in China</span></strong><br>
                        </video>
+
</p>
</td>
+
<table id="table4">
<td valign="top" width="60%">
+
        <tbody><tr>
<p>
+
<td valign="top" width="75%">
Effective communication is especially important in the field of synthetic biology. Because the idea of altering DNA sounds scary to a lot of people. To explain our case clearly, our team designed a game to let people understand and accept our projects when playing the game.<br>
+
<p style="font-size: 26px!important; margin-left: -18px!important;">
 +
We got in touch with the National Secrecy Bureau of Heilongjiang Province in China to understand the bottlenecks and challenges encountered by today's information storage encryption systems to optimize our project.<br>
 
</p>
 
</p>
 
</td>
 
</td>
</tr>
+
<td valign="top" width="25%">
   
+
<img src="https://static.igem.org/mediawiki/2018/9/9f/T--NEFU_China--HP01.png" style="width: 100%;">
</table>
+
<table id="table2">
+
        <tr>
+
<td valign="top" width="60%">
+
<p>
+
In the game, we simulate the processes of receiving information, interpreting the information, stealing the information and deciphering the information. The players can realize the strong confidentiality of our system and the necessity of its existence.<br>
+
</p>
+
</td>
+
<td valign="top" width="40%">
+
<img src="https://static.igem.org/mediawiki/2018/b/ba/T--NEFU_China--HP08.png" style="width: 100%;">
+
 
</td>
 
</td>
 
</tr>
 
</tr>
    </table>
+
    </tbody></table><br>
<table id="table3">
+
<tr>
+
<td valign="top" width="40%">
+
<img src="https://static.igem.org/mediawiki/2018/3/3d/T--NEFU_China--HP09.png" style="width: 100%;">
+
+
</td>
+
<td valign="top" width="60%">
+
<p>
+
Additionally, in the game we also designed a section to emphasize the biological origin of our system, in which we used simple animations to explain details of the biological principles of our case to help people understand our project.<br>
+
</p>
+
</td>
+
    </tr>
+
</table>
+
 
<p>
 
<p>
<strong>Player self-report</strong><br>
+
<strong><span style="color: orange;font-size: 26px;">First of all, we explained the principles and innovations of our case to the experts, and put forward an issue: how can we avoid violent cracking?</span></strong><br><br>
             Player Yang<br>
+
             <span style="color:orange;">Experts’ advice:</span><br><br>
As a student who is not major in biology, synthetic biology is so far for me, but this mini-game opens the door to a new world for me. I never thought that biological knowledge could be applied in information storage and encryptions, this mini-game really helped me learn a lot.<br>
+
<p style="font-size: 26px!important;">
Player Wang<br>
+
1. Violent cracking is unavoidable, so worry is unnecessary.<br>
I found that if I were a burglar who wanted to get true information without correct primers, I had to go through a lot of trials, which shows that this encryption system has stronger confidentiality than the existing encryption methods.  
+
2. Do physical isolation to avoid any possible actions that may divulge secret information in the encryption process.<br>
Player Zhang<br>
+
3. Rights Management. We can authorize the staffs in an organization with different levels of access permissions.
This game is very interesting, and the biological knowledge involved is also refreshing, but I think that if we finally get the sentence that there is blank instead of a string of letters, it may be more convenient for the recipient.<br>
+
4. Maintain an excellent routine record. We need to record the times and purposes of all usage.<br>
Through the player's self-report, we know that our small game really allows players to learn the biological knowledge of our project, and experience the difficulties of cracking our system. At the same time, their suggestions also let us know the shortcomings of our case.  We will use computer programming to improve our password book to achieve the effect of word segmentation.<br>
+
Through the communication with experts, we know that if our system is really going to be used in this field, we not only need to be as rigorous as possible in our biological principles, but also need to limit the equipment and personnel settings to ensure the whole process is rigorous enough.
 +
</p>
 
</p>
 
</p>
 
   
 
   
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     </div>
 
     </div>
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<div class="foot">
 
<div id="foot-title">
 
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<tr>
 
<td>
 
<h1>Userfull links</h1>
 
<h2>
 
<a href="https://2018.igem.org/Team:NEFU_China">Home</a>
 
&nbsp;&nbsp;&nbsp;
 
<a href="https://2018.igem.org/Team:NEFU_China/Model">Model</a>
 
                        &nbsp;&nbsp;
 
                        <a href="https://2018.igem.org/Team:NEFU_China/Description">Project</a>
 
&nbsp;&nbsp;
 
<a href="https://2018.igem.org/Team:NEFU_China/Software">Software</a>
 
    &nbsp;&nbsp;
 
    </h2>
 
 
<h2>
 
<a href="https://2018.igem.org/Team:NEFU_China/Basic_Part">Parts</a>
 
&nbsp;&nbsp;&nbsp;&nbsp;
 
<a href="https://2018.igem.org/Team:NEFU_China/Members">Teams</a>
 
&nbsp;
 
<a href="https://2018.igem.org/Team:NEFU_China/Lock_Key">Results</a>
 
&nbsp;
 
<a href="https://2018.igem.org/Team:NEFU_China/Notebook">Notebook</a>
 
                        &nbsp;&nbsp;
 
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Latest revision as of 13:01, 9 November 2018

Human Practices

Gold integrated

Overview

For this part, we thoroughly considered the application of our project in the actual situation, and discussed these issues with our teachers and experts with different professional expertise in biological companies. Here are our conclusions.


Human Practices - Gold integrated

Suggestion From Professor


1. We discussed with Professor Yuhua Li, when we wanted to choose a chemical agent to induce the expression of Bax (BCL2 Associated X, Apoptosis Regulator) gene, Professor Li suggested that we could use the α-factor to induce the pFig2c promoter to initiate the expression of Bax suicide gene. In this case, α-type yeast can naturally produce α-factor, which can be recognized by a-type yeast to induce the pFig2c promoter.
2. When we discussed these questions with Professor Chunbo Teng, she suggested that we can use introns that can be spliced out during mRNA maturation to further encrypt our information.



Opinion


Because we have taken into account the interception of information during message transmission, spy yeast ( the information carrying yeast, designated as "spy yeast", a-type yeast) can be induced to trigger apoptosis by the α factor of the killer yeast (α-type yeast) in the process of complete cultivation. The limited culturing time of the yeast prior to their death can prevent information from being leaked out. When designated receiver gets the information-carrying yeast and culture it properly, the yeast can successfully survive.

Applications


Through communication with experts from the National Secrecy Bureau of Heilongjiang Province in China, we learned that if our system can be used in the encryption industry, we should be as rigorous as possible in our biological principles. We must limit the equipment and personnel access scopes to ensure that the entire encryption process is rigorous enough. For example, the transport of information-carrying yeast powder and the storage of the keys should be the responsibility of different people, and each part should be accessible to a limited number of people.

Outreach


Player self-report

Player Feng Yang

As a student who is not major in biology, synthetic biology is so far for me, but this mini-game opens the door to a new world for me. I never thought that biological knowledge could be applied in information storage and encryptions, this mini-game really helped me learn a lot.


Player Jian Wang

I found that if I were a burglar who wanted to get true information without correct primers, I had to go through a lot of trials, which shows that this encryption system has stronger confidentiality than the existing encryption methods.


Player Si Zhang

This game is very interesting, and the biological knowledge involved is also refreshing, but I think that if we finally get the sentence that there is blank instead of a string of letters, it may be more convenient for the recipient. Through the player's self-report, we know that our small game really allows players to learn the biological knowledge of our project, and experience the difficulties of cracking our system. At the same time, their suggestions also let us know the shortcomings of our case. We will use computer programming to improve our password book to achieve the effect of word segmentation.


Through the player's self-report, we know that our small game really allows players to learn the biological knowledge of our project, and experience the difficulties of cracking our system. At the same time, their suggestions also let us know the shortcomings of our case. We will use computer programming to improve our password book to achieve the effect of word segmentation.


Social


Our project is about the storage, encryption and transportation of information, so we decided to interview relevant experts and potential users for their advice to optimize our project.


National Institutions
The National Secrecy Bureau of Heilongjiang Province in China

We got in touch with the National Secrecy Bureau of Heilongjiang Province in China to understand the bottlenecks and challenges encountered by today's information storage encryption systems to optimize our project.


First of all, we explained the principles and innovations of our case to the experts, and put forward an issue: how can we avoid violent cracking?

Experts’ advice:

1. Violent cracking is unavoidable, so worry is unnecessary.
2. Do physical isolation to avoid any possible actions that may divulge secret information in the encryption process.
3. Rights Management. We can authorize the staffs in an organization with different levels of access permissions. 4. Maintain an excellent routine record. We need to record the times and purposes of all usage.
Through the communication with experts, we know that if our system is really going to be used in this field, we not only need to be as rigorous as possible in our biological principles, but also need to limit the equipment and personnel settings to ensure the whole process is rigorous enough.