Team:Grenoble-EMSE-LSU/Team/Advisors

From 2013.igem.org

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You can read their presentations below for further information:<br><br>
You can read their presentations below for further information:<br><br>
<a href="#">Ina Attrée</a>, <a href="#robert">Robert Baptist</a>, <a href="#geoffrey">Geoffrey Bouchage</a>, <a href="#franz">Franz Bruckert</a>, <a href="#alex">Alexandre Dawid</a>, <a href="#valerie">Valérie Forest</a>, <a href="#hans">Hans Geiselmann</a>, <a href="#hidde">Hidde de Jong</a>, <a href="#adeline">Adeline Millet</a>, <a href="#pierre">Pierre Pautré</a>, <a href="#stephane">Stéphane Pinhal</a>, <a href="#delphine">Delphine Ropers</a>, <a href="#marianne">Marianne Weidenhaupt</a></p>
<a href="#">Ina Attrée</a>, <a href="#robert">Robert Baptist</a>, <a href="#geoffrey">Geoffrey Bouchage</a>, <a href="#franz">Franz Bruckert</a>, <a href="#alex">Alexandre Dawid</a>, <a href="#valerie">Valérie Forest</a>, <a href="#hans">Hans Geiselmann</a>, <a href="#hidde">Hidde de Jong</a>, <a href="#adeline">Adeline Millet</a>, <a href="#pierre">Pierre Pautré</a>, <a href="#stephane">Stéphane Pinhal</a>, <a href="#delphine">Delphine Ropers</a>, <a href="#marianne">Marianne Weidenhaupt</a></p>
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<a href="http://www.cea.fr/" target="_blank"><h2 id="robert">Ina Attrée<img src="http://www.cea.fr/var/site/storage/images/media/images/logo_cea_2012/1595422-1-fre-FR/logo_cea_2012_medium.png?original=/var/site/storage/images/media/images/logo_cea_2012/1595422-1-fre-FR/logo_cea_2012.png" style="float:right" height="50px"></h2></a>
 
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<p><strong>CEA</strong><br>
 
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                                         <em>Teacher researcher in biology</em><br><br>
                                         <em>Teacher researcher in biology</em><br><br>
                                         To my point of view, the most interesting aspect of the iGEM project is the collective construction of a new way of doing bioengineering. The modular approach is clearly more efficient in terms of experimental effort and it also helps understanding how cellular functions are organized. Implementing new functions in bacteria should in turn help to build up more efficient ways to represent the living beings complexity. Besides that, I like and challenges and iGEM is all of this.</p>
                                         To my point of view, the most interesting aspect of the iGEM project is the collective construction of a new way of doing bioengineering. The modular approach is clearly more efficient in terms of experimental effort and it also helps understanding how cellular functions are organized. Implementing new functions in bacteria should in turn help to build up more efficient ways to represent the living beings complexity. Besides that, I like and challenges and iGEM is all of this.</p>
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<h2 id="valerie">Alexandre Dawid</h2>
 
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<p><strong>Liphy</strong><br>
 
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                                         <em>PhD in computer science, University of Twente, the Netherlands</em><br><br>
                                         <em>PhD in computer science, University of Twente, the Netherlands</em><br><br>
                                         An engineer by training, I like to do interdisciplinary research, at the interface of biology, computer science, and mathematics. More specifically, since a number of years I have been interested in the modeling of the regulatory networks controlling the functioning of  bacteria. Synthetic biology proposes an interesting approach for better understanding these networks: can we modify the network connections so as to extend the behavioral repertoire of bacterial cells? The iGEM competition addresses these questions in an original way, at the same time playful and highly demanding.</p>
                                         An engineer by training, I like to do interdisciplinary research, at the interface of biology, computer science, and mathematics. More specifically, since a number of years I have been interested in the modeling of the regulatory networks controlling the functioning of  bacteria. Synthetic biology proposes an interesting approach for better understanding these networks: can we modify the network connections so as to extend the behavioral repertoire of bacterial cells? The iGEM competition addresses these questions in an original way, at the same time playful and highly demanding.</p>
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                                <!-- Adeline -->
 
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<h2 id="pierre">Adeline Millet</h2>
 
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<p><strong>Liphy</strong></p>
 
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                                         I am a biology and immunology teacher at the Grenoble Institute of Technology-Phelma. One of the important points of my teaching is to train students to be able to work at the interface of different scientific disciplines. iGEM is a very exciting challenge that plunges us straight into interdisciplinarity and puts teachers and students face to face with what we aim for in our daily work. Personally I worked in bacterial genetics during my PhD, a field I left some 15 years ago and which I am more than happy to work in again with our team.</p>
                                         I am a biology and immunology teacher at the Grenoble Institute of Technology-Phelma. One of the important points of my teaching is to train students to be able to work at the interface of different scientific disciplines. iGEM is a very exciting challenge that plunges us straight into interdisciplinarity and puts teachers and students face to face with what we aim for in our daily work. Personally I worked in bacterial genetics during my PhD, a field I left some 15 years ago and which I am more than happy to work in again with our team.</p>
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Revision as of 10:08, 21 September 2013

Grenoble-EMSE-LSU, iGEM


Grenoble-EMSE-LSU, iGEM

Grenoble-EMSE-LSU, iGEM

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