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<p>There are many kind of design approaches : « space designers » create new places to live in, « sound designers » create new experiences to hear, « food designers » create new taste to eat, « graphic designers » create new signs and symbols to see, and « digital designers » create new interfaces to navigate into the digital world.</p> | <p>There are many kind of design approaches : « space designers » create new places to live in, « sound designers » create new experiences to hear, « food designers » create new taste to eat, « graphic designers » create new signs and symbols to see, and « digital designers » create new interfaces to navigate into the digital world.</p> | ||
− | <p>iGEM Pasteur team integrates industrial designers. Industrial design is a creative discipline that aims to create innovative solutions in order to solve contemporary issues in various fields : health, well-being, energy, mobility, habitat, food, etc. When designing new products or services, designers use a user centric approach that integrates several notions such as usages, ergonomics, industrial processes, technologies, social, cultural, environmental and economical aspects. Taking | + | <p>iGEM Pasteur team integrates industrial designers. Industrial design is a creative discipline that aims to create innovative solutions in order to solve contemporary issues in various fields : health, well-being, energy, mobility, habitat, food, etc. When designing new products or services, designers use a user centric approach that integrates several notions such as usages, ergonomics, industrial processes, technologies, social, cultural, environmental and economical aspects. Taking in account all these parameters allows designers to conceive solutions that address the targeted issues in a relevant way and that benefit to the user. </p> |
− | <p>Nowadays, industrial design is evolving. To address issues in a more and more | + | <p>Nowadays, industrial design is evolving. To address issues in a more and more complexe and accurate way, industrial designers are getting closer to science by working with scientists and by settling in the labs. Our team is a good example of these new ways to co-create tomorrow’s innovations. </p> |
− | <p>Despite promising opportunities offered by these new cooperations, designers and scientists does not have the same cultures, languages, tools, etc. | + | <p>Despite promising opportunities offered by these new cooperations, designers and scientists does not have the same cultures, languages, tools, etc. that avoid these collaborations to be fruitful. To overcome these issues, we shared and thought design tools and methodologies to our team mates in order to build a common ground for understanding and co-creation. Once done, we followed the subsequent process :</p> |
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-identify specific literature and technical documents regarding existing prosthesis;<br> | -identify specific literature and technical documents regarding existing prosthesis;<br> | ||
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− | <p>This step led us to understand amputees daily lives (behaviors, psychology, life environments, healthcare system, economic resources, etc.) and to specify the main issues (such as bacterial infections) and challenges to address in order to | + | <p>This step led us to understand amputees daily lives (behaviors, psychology, life environments, healthcare system, economic resources, etc.) and to specify the main issues (such as bacterial infections) and challenges to address in order to propose them relevant and effective innovations. These contents (data, testimonies, etc.) have been collected thanks to humans and social tools (semi-directive interview grids), design tools (mood boards), and documentation tools (photography, video, sound recording).</p> |
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<img src="https://static.igem.org/mediawiki/2018/b/bd/T--Pasteur_Paris--Figure2.svg"> | <img src="https://static.igem.org/mediawiki/2018/b/bd/T--Pasteur_Paris--Figure2.svg"> | ||
<div class="legend"><b>Figure 2: </b>Diagram of the implantation system parts</div> | <div class="legend"><b>Figure 2: </b>Diagram of the implantation system parts</div> | ||
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<img src="https://static.igem.org/mediawiki/2018/8/8c/T--Pasteur_Paris--Figure3.svg"> | <img src="https://static.igem.org/mediawiki/2018/8/8c/T--Pasteur_Paris--Figure3.svg"> | ||
<div class="legend"><b>Figure 3: </b>Implantation cross section view</div> | <div class="legend"><b>Figure 3: </b>Implantation cross section view</div> | ||
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- Wifi connection, to exchange those data with the distant secure NeuronArch server, and vice versa.</p> | - Wifi connection, to exchange those data with the distant secure NeuronArch server, and vice versa.</p> | ||
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<img src="https://static.igem.org/mediawiki/2018/e/e5/T--Pasteur_Paris--Figure6.svg"> | <img src="https://static.igem.org/mediawiki/2018/e/e5/T--Pasteur_Paris--Figure6.svg"> | ||
<div class="legend"><b>Figure 6: </b>Communication network</div> | <div class="legend"><b>Figure 6: </b>Communication network</div> | ||
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<span class="closeCross"><img src="https://static.igem.org/mediawiki/2018/6/67/T--Pasteur_Paris--CloseCross.svg"></span> | <span class="closeCross"><img src="https://static.igem.org/mediawiki/2018/6/67/T--Pasteur_Paris--CloseCross.svg"></span> | ||
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− | <p>Once our solution digitally designed, we had to prototype both the device and the app in real. Thanks to rapid prototyping tools, such as 3D printers (FormLabs Form2 (<b>Figure 1</b>), FormWash, FormCure, and Ultimaker 3), laser cutting (Trotec Speedy360), and hands-on work (sand (<b>Figure 2 and 3)</b>, assembly, paint, finishes, etc.), we prototyped the device. Thanks to digital prototyping tools, such as desktop publishing softwares (Adobe Photoshop, Adobe Illustrator, Google Gallery), we prototyped the app and the website. This step helped the team to check and validate products dimensions, ergonomics, look and | + | <p>Once our solution digitally designed, we had to prototype both the device and the app in real. Thanks to rapid prototyping tools, such as 3D printers (FormLabs Form2 (<b>Figure 1</b>), FormWash, FormCure, and Ultimaker 3), laser cutting (Trotec Speedy360), and hands-on work (sand (<b>Figure 2 and 3)</b>, assembly, paint, finishes, etc.), we prototyped the device. Thanks to digital prototyping tools, such as desktop publishing softwares (Adobe Photoshop, Adobe Illustrator, Google Gallery), we prototyped the app and the website. This step helped the team to check and validate products dimensions, ergonomics, look and feel. </p> |
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Revision as of 19:58, 14 October 2018
There are many kind of design approaches : « space designers » create new places to live in, « sound designers » create new experiences to hear, « food designers » create new taste to eat, « graphic designers » create new signs and symbols to see, and « digital designers » create new interfaces to navigate into the digital world.
iGEM Pasteur team integrates industrial designers. Industrial design is a creative discipline that aims to create innovative solutions in order to solve contemporary issues in various fields : health, well-being, energy, mobility, habitat, food, etc. When designing new products or services, designers use a user centric approach that integrates several notions such as usages, ergonomics, industrial processes, technologies, social, cultural, environmental and economical aspects. Taking in account all these parameters allows designers to conceive solutions that address the targeted issues in a relevant way and that benefit to the user.
Nowadays, industrial design is evolving. To address issues in a more and more complexe and accurate way, industrial designers are getting closer to science by working with scientists and by settling in the labs. Our team is a good example of these new ways to co-create tomorrow’s innovations.
Despite promising opportunities offered by these new cooperations, designers and scientists does not have the same cultures, languages, tools, etc. that avoid these collaborations to be fruitful. To overcome these issues, we shared and thought design tools and methodologies to our team mates in order to build a common ground for understanding and co-creation. Once done, we followed the subsequent process :