Difference between revisions of "Team:Valencia UPV/Human Practices"

 
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                     <a class="inner-link" href="#Kano_model"><img class="fotosAttr" src="https://static.igem.org/mediawiki/2018/0/00/T--Valencia_UPV--GenerationUPV2018.png"></a>
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                     <a class="inner-link" ><img class="fotosAttr" src="https://static.igem.org/mediawiki/2018/0/00/T--Valencia_UPV--GenerationUPV2018.png"></a>
 
                     <h6 style="text-align: center !important;"><b>Education</b><p></p>  With a friendly-user software, Printeria is designed to be an educational tool</h6>
 
                     <h6 style="text-align: center !important;"><b>Education</b><p></p>  With a friendly-user software, Printeria is designed to be an educational tool</h6>
 
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                     <a class="inner-link" href="#Expert_dialogue"><img class="fotosAttr" src="https://static.igem.org/mediawiki/2018/thumb/8/89/T--Valencia_UPV--Logo_Investigadores_HumanUPV2018.png/900px-T--Valencia_UPV--Logo_Investigadores_HumanUPV2018.png"></a>
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                     <a class="inner-link" ><img class="fotosAttr" src="https://static.igem.org/mediawiki/2018/thumb/8/89/T--Valencia_UPV--Logo_Investigadores_HumanUPV2018.png/900px-T--Valencia_UPV--Logo_Investigadores_HumanUPV2018.png"></a>
 
                     <h6 style="text-align: center !important;"><b>Research groups</b><p></p>  Printeria automatizes protocols, and enhances the experiments reproducibility.</h6>
 
                     <h6 style="text-align: center !important;"><b>Research groups</b><p></p>  Printeria automatizes protocols, and enhances the experiments reproducibility.</h6>
 
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                     <a class="inner-link" href="#Safety"><img class="fotosAttr" src="https://static.igem.org/mediawiki/2018/8/8d/T--Valencia_UPV--BioArtUPV2018.png"></a>
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                     <a class="inner-link" ><img class="fotosAttr" src="https://static.igem.org/mediawiki/2018/8/8d/T--Valencia_UPV--BioArtUPV2018.png"></a>
 
                     <h6 style="text-align: center !important;"><b>Bioartists</b><p></p>  Printeria offers a compact and friendly toolkit for the bioartist entire disposal</h6>
 
                     <h6 style="text-align: center !important;"><b>Bioartists</b><p></p>  Printeria offers a compact and friendly toolkit for the bioartist entire disposal</h6>
 
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                           <p><b>They don’t create their own GM microorganisms, so they think Printeria could be a useful machine to do so. Memo encourages us to write a manuscript out of this, even if the machine does not totally work. This could make people start using it so that Printeria could evolve</b>.</p>
 
                           <p><b>They don’t create their own GM microorganisms, so they think Printeria could be a useful machine to do so. Memo encourages us to write a manuscript out of this, even if the machine does not totally work. This could make people start using it so that Printeria could evolve</b>.</p>
  
                           <p>The idea of doing a manuscript caught our eyes and we are planning to do so. It also made us think about creating the ‘Printeria user manual’ as well as an activity booklet for the user to learn even more about SynBio.</p>
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                           <p>The idea of doing a manuscript caught our eyes and we are planning to do so. It also made us think about creating the <a href="https://static.igem.org/mediawiki/2018/6/6d/T--Valencia_UPV--manual2UPV2018.pdf" target="_blank">‘Printeria user manual’</a> as well as an activity booklet for the user to learn even more about SynBio.</p>
 
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               <p><a href="https://imem.ua.es/es/quienes-somos/francisco-juan-martinez-mojica.html" target="blank" style="
 
               <p><a href="https://imem.ua.es/es/quienes-somos/francisco-juan-martinez-mojica.html" target="blank" style="
padding-right: 0px;">Dr. Francisco Juan Martínez Mojica</a>&nbsp;is a microbiologist, researcher and professor at the University of Alicante. He is the discoverer of the CRISPR-Cas systems whose application would later be researched by Emmanuelle Charpentier and Jennifer Doudna among others. </p>
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padding-right: 0px;">Dr. Francisco Juan Martínez Mojica</a>&nbsp;is a microbiologist, researcher and professor at the University of Alicante. He is the discoverer of the CRISPR/Cas9 systems whose application would later be researched by Emmanuelle Charpentier and Jennifer Doudna among others. </p>
  
  
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                           <p><b>Mojica agrees that with Printeria the automation of Printeria decreases the experimental error. However, he warned us about the importance of being aware of the decisions to make, even if a device such Printeria is able to do all the process by itself.</b></p> <p>
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                           <p><b>Mojica agrees that with the automation which Printeria offers the experimental error can be reduced. However, he warned us about the importance of being aware of the decisions to make, even if a device such Printeria is able to do all the process by itself.</b></p> <p>
 
To avoid the user lack of awareness, we decided to develop a <b>Simulation tool</b>, so the user could simulate the experiments in silico. Thus, this functionality  provides the user with a quantitative, mathematical description to ensure the rational decision making. </p>
 
To avoid the user lack of awareness, we decided to develop a <b>Simulation tool</b>, so the user could simulate the experiments in silico. Thus, this functionality  provides the user with a quantitative, mathematical description to ensure the rational decision making. </p>
 
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                           <p><b>They way we have to bring Printeria to the market</b></p><p>Yturralde said that there is something really important in art and it is <b>the creative process</b>. He recommended us not to show the product (draws in petri plates) but show the creative process. This way we will catch the artist attention. In this line, we consider to do several promotional videos with the process to show them in future art gallery expositions like Hangar Gallery in Barcelona or EL planetari de Castelló where we will go after the jamboree to present our project.</p>
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                           <p><b>They way we have to bring Printeria to the market</b></p><p>Yturralde said that there is something really important in art and it is <b>the creative process</b>. He recommended us not to show the product (draws in petri plates) but show the creative process. This way we will catch the artist attention. In this line, we consider to do several promotional videos with the process to show them in future art gallery expositions like Hangar Gallery in Barcelona or E planetari de Castelló where we will go after the jamboree to present our project.</p>
  
 
                           <p>Furthermore, he told us that we had to sell the idea of an art that evolves with time because Printeria is not only makes art, it makes life, science and evolution.</p>
 
                           <p>Furthermore, he told us that we had to sell the idea of an art that evolves with time because Printeria is not only makes art, it makes life, science and evolution.</p>
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                           <p><b>Where will Printeria have a great impact?</b></p><p>Yturralde recommends the <b>US</b> to launch such innovative projects. The fact is that it is not without reason, as in Spain there have been many television media and laboratories that have ignored us, for example TVE (Spanish Television) or A3 (Antena tres) which are very important TV channels in our country. Therefore, if we continue with the project after iGEM, we will direct all our efforts abroad, it is decided!</p>
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                           <p><b>Where will Printeria have a great impact?</b></p><p>Yturralde recommends the <b>US</b> to launch such innovative projects. The fact is that it is not without reason, as in Spain there have been many television media and laboratories that have ignored us. Therefore, if we continue with the project after iGEM, we will direct all our efforts abroad, it is decided!</p>
 
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                                 <td><p><b>Sterilization of the PCB</b></p></td>
 
                                 <td><p><b>Sterilization of the PCB</b></p></td>
                                 <td><p>How do we clean the PCB without damaging the metalic and plastic components? Well, we decided to copy what flow cabins do. Based on this  we decided to use UV led lights to achieve this objective. Furthermore we have programmed an especial reaction that use little droplets with HCl and ethanol to clean and ensure we have perfectly sterilized the PCB.</p></td>  
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                                 <td><p>How do we clean the PCB without damaging the metalic and plastic components? Well, we decided to do what Francisco Mojica recomended to us which is more or less what flow cabins do. We decided to use UV led lights. Furthermore we have programmed an especial reaction that use little droplets with HCl and ethanol to clean and ensure we have perfectly sterilized the PCB.</p></td>  
 
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                                 <td><p><b>Overheating of the PCB</b></p></td>
 
                                 <td><p><b>Overheating of the PCB</b></p></td>
                                 <td><p>As the PCB has a cold and a hot zone, it is necessary to evacuate the heat generated. The hot zone can achieve more than 80º degrees and can be a potential danger. A resisitance is responsible of heating and a peltier plate is responsible of chilling. Peltier effect is based in a semiconductor metal where you apply a potential difference. Then, you create a hot part and a cold one in that semiconductor. We use the cold part to extract the energy and stabilize the temperature via conduction of the PCB's hot zone.</p></td>  
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                                 <td><p>As the PCB has a cold and a hot zone, it is necessary to evacuate the heat generated. The hot zone can achieve more than 80º degrees and can be a potential danger. A resistance is responsible of heating and a peltier plate is responsible of chilling. Peltier effect is based in a semiconductor metal where you apply a potential difference. Then, you create a hot part and a cold one in that semiconductor. We use the cold part to extract the energy and stabilize the temperature via conduction of the PCB's hot zone.</p></td>  
 
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         <h3 style="position: initial;">References</h3>
 
         <h3 style="position: initial;">References</h3>
<div><p style=""><b>1.</b> TERNINKO, J. (1997). Step-by-Step QFD, Customer-Driven Product Design, Second edition. USA: St . Lucie Press.</p><p><b>2.</b> Olson,D. (2014) “Kano Model Priorization” <http: bawiki.com="" wiki="" techniques="" kano-model-prioritization="">.[Consulted: 10/8/2018]</http:></p><p><b>3.</b> Youtube, “Aplicación del modelo Kano-Caso práctico Excel” on Youtube <https: www.youtube.com="" watch?v="_ZgFEur-vLA">[Consulted: 10/8/2018]</https:></p><p><b>4.</b> María Peñil &amp; Mehmet Berkmen, “Bacterial Art” <https: www.bacterialart.com="" who-we-are="">[Consulted: 12/8/2018]</https:></p><p><b>5.</b>Committee on Science, Technology, and Law; Policy and Global Affairs; Board on Life Sciences; Division on Earth and Life Sciences; National Academy of Engineering; National Research Council. Positioning Synthetic Biology to Meet the Challenges of the 21st Century: Summary Report of a Six Academies Symposium Series. Washington (DC): National Academies Press (US); 2013 Aug 5. 2, Synthetic Biology: Science and Technology for the New Millennium.</p></div>
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<div><p style=""><b>1.</b> TERNINKO, J. (1997). Step-by-Step QFD, Customer-Driven Product Design, Second edition. USA: St . Lucie Press.</p><p><b>2.</b> Olson,D. (2014) “Kano Model Priorization” <http: bawiki.com="" wiki="" techniques="" kano-model-prioritization="">.[Consulted: 10/8/2018]</http:></p><p><b>3.</b> Youtube, “Aplicación del modelo Kano-Caso práctico Excel” on Youtube <https: www.youtube.com="" watch?v="_ZgFEur-vLA">[Consulted: 10/8/2018]</https:></p><p><b>4.</b> María Peñil &amp; Mehmet Berkmen, “Bacterial Art” <https: www.bacterialart.com="" who-we-are="">[Consulted: 12/8/2018]</https:></p><p><b>5.</b>Committee on Science, Technology, and Law; Policy and Global Affairs; Board on Life Sciences; Division on Earth and Life Sciences; National Academy of Engineering; National Research Council. Positioning Synthetic Biology to Meet the Challenges of the 21st Century: Summary Report of a Six Academies Symposium Series. Washington (DC): National Academies Press (US); 2013 Aug 5. 2, Synthetic Biology: Science and Technology for the New Millennium. [Consulted: 10/8/2018]</p></div>
  
  

Latest revision as of 15:54, 5 December 2018

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Introduction

Science and technology have always been prompted by a desire of solving social issues. Thus, science would be nothing if it does not exist a relationship with people.

In this page we are going to show how we have faced integrated practices and we will give an answer these questions:

  • How your project affects the world and how the world affects it?

  • Is your work good enough for the world?

Integrated Human Practices

Feedback receiving: the key to the success

When creating a new scientific device, the existence of political, economic and social frameworks leads into the necessity of an in-depth analysis of how your creation would affect the world and how the world affects it.

As a result, our first step was to identify the real-life problems that could be solved with Printeria and so classify its application fields. To do so, we decided to employ a tip given by Israel (researcher at UPV) the MIT market segmentation table . This table allows you to classify all users you think your product could be interesting to buy on the basis of several questions. Using it we analyzed Printeria potential users in accordance with our project values.

You can read the resulting market segmentation analysis and how it helped us to focus our initial approach by clicking here:

As a result, Printeria main applications fields can be summarized as:

Education

With a friendly-user software, Printeria is designed to be an educational tool
Research groups

Printeria automatizes protocols, and enhances the experiments reproducibility.
Bioartists

Printeria offers a compact and friendly toolkit for the bioartist entire disposal

Thus, our main concern was how to fulfill the different stakeholder demands. Following our interdisciplinary spirit, we searched for continuos input from professionals with different backgrounds and non professionals, so we could ensure we were designing a useful synbio device.

This year we have decided to divide Integrated human in three parts:

Kano model

An engineering way to integrate feedback.
Expert dialoge

How experts point of view changed the way we did Printeria.
Safety desing

How safety specifications changed Printeria

References

1. TERNINKO, J. (1997). Step-by-Step QFD, Customer-Driven Product Design, Second edition. USA: St . Lucie Press.

2. Olson,D. (2014) “Kano Model Priorization” .[Consulted: 10/8/2018]

3. Youtube, “Aplicación del modelo Kano-Caso práctico Excel” on Youtube [Consulted: 10/8/2018]

4. María Peñil & Mehmet Berkmen, “Bacterial Art” [Consulted: 12/8/2018]

5.Committee on Science, Technology, and Law; Policy and Global Affairs; Board on Life Sciences; Division on Earth and Life Sciences; National Academy of Engineering; National Research Council. Positioning Synthetic Biology to Meet the Challenges of the 21st Century: Summary Report of a Six Academies Symposium Series. Washington (DC): National Academies Press (US); 2013 Aug 5. 2, Synthetic Biology: Science and Technology for the New Millennium. [Consulted: 10/8/2018]

CONTACT US igem.upv.2018@gmail.com