Difference between revisions of "Team:Valencia UPV/Public Engagement"

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                   <p>In this activity, they created their own <b>‘living masterpice’</b>. Previously, we did detailed explanation on how to properly use the lab material and cells during simple microbiology protocols. Thus, they learned both from the art and microbiology worlds.              
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                   <p>In this activity, they created their own <b>‘living masterpice’</b>. Previously, we did detailed explanation on how to properly use the lab material and cells during simple microbiology protocols. Thus, they learned both from the art and microbiology worlds. </p>             
 
       <img src="https://static.igem.org/mediawiki/2018/6/66/T--Valencia_UPV--drawingUPV2018.jpeg" alt="">
 
       <img src="https://static.igem.org/mediawiki/2018/6/66/T--Valencia_UPV--drawingUPV2018.jpeg" alt="">
 
                
 
                
 
                    
 
                    
<p>Then, using solid <b>agar plates</b> as a <b>canvas</b>, <b>inoculating loops</b> as <b>brushes</b> and the palette of <b>pigmented bacteria</b> we self-made in the lab as <b>tempera</b>, they blew their minds to do imaginative <b>Microbial Art</b>. As soon as they finished, petri dishes were collected, kept and sealed for a later incubation in our lab. Finally, a gallery of all their beutiful works was published in <a href="https://www.instagram.com/printeriaupv/?hl=es">@printeriaupv Instagram profile</a>, so everyone could share them and so create interest into Bacterial Art among society. </p>  
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<p>Then, using solid <b>agar plates</b> as a <b>canvas</b>, <b>inoculating loops</b> as <b>brushes</b> and the palette of <b>pigmented bacteria</b> we self-made in the lab as <b>tempera</b>, they blew their minds to do imaginative <b>Microbial Art</b>. As soon as they finished, petri dishes were collected, kept and sealed for a later incubation in our lab. Finally, a gallery of all their beutiful works was published in <a href="https://www.instagram.com/printeriaupv"> @printeriaupv Instagram profile </a>, so everyone could share them and create interest into Bacterial Art among society. </p>  
 
<p>As a conclusion, this workshop was a total success, and both the public and ourselves were delighted to realize the beauty of the microbial world and its simple but yet appealing applications.
 
<p>As a conclusion, this workshop was a total success, and both the public and ourselves were delighted to realize the beauty of the microbial world and its simple but yet appealing applications.
 
  <p><img src="https://static.igem.org/mediawiki/2018/d/de/T--Valencia_UPV--placasMAGUPV2018.jpg" alt=""></p>
 
  <p><img src="https://static.igem.org/mediawiki/2018/d/de/T--Valencia_UPV--placasMAGUPV2018.jpg" alt=""></p>
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                   <p> José María Yturralde is an spanish artist widely known for his relationship with science.  He collaborated with artists and scientists to redefine his understanding of shapes, and explored ways that the mainframe computer could be used as a tool for his art (2). In this context, we thought it could be a great idea to <b>introduce</b> him to the vast possibilities of the <b>BioArt</b>, and so learn about his life experiences all at once.
 
                   <p> José María Yturralde is an spanish artist widely known for his relationship with science.  He collaborated with artists and scientists to redefine his understanding of shapes, and explored ways that the mainframe computer could be used as a tool for his art (2). In this context, we thought it could be a great idea to <b>introduce</b> him to the vast possibilities of the <b>BioArt</b>, and so learn about his life experiences all at once.
 
                   </p><p>As part of this outreach collaboration we decided to recreate one of his masterpieces, from the well-known collection <b>'Impossible Figures'</b>, with our own genetic engineered bacteria.  
 
                   </p><p>As part of this outreach collaboration we decided to recreate one of his masterpieces, from the well-known collection <b>'Impossible Figures'</b>, with our own genetic engineered bacteria.  
                   <p>To do so, we printed a 3D mold of the figure to delimitate the barriers of the drawing, so we could then inoculate each coloured bacteria in a compartiment of the solid agar medium. Finally, using bigger than usual agar dishes, we were able to recreate his artwork. After several trials with different colour tones and molds, the final result was perfect:  </p>
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                   <p>To do so, we printed a 3D mold of the figure to delimitate the barriers of the drawing, so we could inoculate each coloured bacteria in a compartiment of the solid agar medium. Finally, using bigger than usual agar dishes, we were able to recreate his artwork. After several trials with different colour tones and molds, the final result was perfect:  </p>
 
                   <div class="fotoConPie">
 
                   <div class="fotoConPie">
 
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</p><ul>
 
</p><ul>
 
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     <p>Bacteria: enemies or friends? </p> <p> We wanted to beat the stigma against bacteria, explaining their importance and benefits, not only naturally, but also in biotechnology (i.e.: bacteria as biofactories for medicine, industry, etc.) </p>
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     <p><b>Bacteria: enemies or friends? </b></p> <p> We wanted to beat the stigma against bacteria, explaining their importance and benefits, not only naturally, but also in biotechnology (i.e.: bacteria as biofactories for medicine, industry, etc.) </p>
 
   </li>
 
   </li>
 
   <li>
 
   <li>
 
     <p><b>Printeria: how it really works? </b></p> <p> As SynBio is not only about biology, we thought it was also highly important to demonstrate the role of engineering and electronics. Thus, we decided to explain them, from an educational approch, the basis of Printeria: how the digital microfluidic system allows us to control each biotech process with high accuracy. </p>
 
     <p><b>Printeria: how it really works? </b></p> <p> As SynBio is not only about biology, we thought it was also highly important to demonstrate the role of engineering and electronics. Thus, we decided to explain them, from an educational approch, the basis of Printeria: how the digital microfluidic system allows us to control each biotech process with high accuracy. </p>
  
    <img src="https://static.igem.org/mediawiki/2018/6/66/T--Valencia_UPV--drawingUPV2018.jpeg" alt="">
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    <p>Gif gotas colores </p>
  
       <p>They were able to life in first person the <b>droplets controlled movement</b> around our PCB surface. Moreover, we showed them several videos and gifs to ensure students could understand such kind of a priori complex concepts. As a result, many of them finished the activity being completely interested in <b>learning more</b> about the microfluidic technology and its future applications.  
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       <p>They were able to life in first person the <b>droplets controlled movement</b> around our PCB surface. Moreover, we showed them several videos to ensure they could understand such kind of a priori complex concepts. As a result, many of them finished the activity being completely interested in <b>learning more</b> about the microfluidic technology and its future applications.  
 
</p></li></ul>
 
</p></li></ul>
  
 
<h4>Printeria: educational approach</h4>
 
<h4>Printeria: educational approach</h4>
 
<p>Printeria aim is to be used as an educational tool. Taking into account that, generally, people doesn't even know what SynBio, we realized it was necessary to ensure students could use Printeria in a <b>friendly but technically correct</b> way. </p>
 
<p>Printeria aim is to be used as an educational tool. Taking into account that, generally, people doesn't even know what SynBio, we realized it was necessary to ensure students could use Printeria in a <b>friendly but technically correct</b> way. </p>
<p>To do so, Printeria includes a <b>user-guide manual</b>, such as the ones that commonly come attached with ordinary printers, to explain to the most basic user <b>how to proceed </b> once Printeria has arrived to his life. This manual includes biosafety measurements considerations, software interface explanations and hardware functionality. By using it, anyone could understand how to easily choose pre-designed transcriptional units or assemble his own desired TU.  You can all read the complete manual by clicking here:
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<p>To do so, Printeria includes a <b>user-guide manual</b>, inspired in the ones that commonly come attached with ordinary printers, to explain to the most basic user <b>how to proceed </b> once Printeria has arrived to his life. This manual includes biosafety measurements considerations, software interface explanations and hardware functionality. By using it, anyone could understand how to easily choose pre-designed transcriptional units or assemble his own desired TU.  You can all read the complete manual by clicking here:
  
 
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<p>However, we realized that, to reach a real educational approach, we needed to ensure not only the easy and explained use of Printeria, but also the understanding of the biological processes upon each step. Thus, we have developed an <b>activity booklet</b> to be used by <b>teachers and students</b>. This example activities can be read by clicking here:
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<p>However, we realized that, to reach a real educational approach, we needed to ensure not only the easy and explained use of Printeria, but also the <b>understanding of the biological processes</b> upon each step. Thus, we have developed an <b>activity booklet</b> to be used by <b>teachers and students</b>. This didactical example activities can be read here:
 
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                         text-align: center;"><a class="btn btn--primary-1" href="link" style="
 
                         text-align: center;"><a class="btn btn--primary-1" href="link" style="

Revision as of 18:19, 13 October 2018

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Social outreach: exploring the relation between art and science
Education: enhancing hand-on STEAM curricula for the future generations
European Research Night: fighting against common SynBio misconceptions
Design Factory Exhibition: promoting SynBio to the university community

CONTACT US igem.upv.2018@gmail.com